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Near SBI ATM,
Puducherry.
Email Id: praveen@nexgenproject.com.
www.nexgenproject.com
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Telephone: 0413-2211159.
NEXGEN TECHNOLOGY as an efficient Software Training Center located at Pondicherry with IT Training on IEEE Projects in Android,IEEE IT B.Tech Student Projects, Android Projects Training with Placements Pondicherry, IEEE projects in pondicherry, final IEEE Projects in Pondicherry , MCA, BTech, BCA Projects in Pondicherry, Bulk IEEE PROJECTS IN Pondicherry.So far we have reached almost all engineering colleges located in Pondicherry and around 90km
This document lists 51 MATLAB projects related to power electronics, power systems, and PID control from IEEE 2017. The projects cover topics such as grid-connected PV converters, cascaded multilevel converters, active power filters, renewable energy systems, and motor drives. Vision Solutions provides engineering services and calls for collaboration on these projects in Hyderabad, Guntur, and Vijayawada, India.
The document lists 50 power electronics projects from IEEE publications in 2014. It includes the project title, domain, and year for each project. MSR Projects is an SSI certified institution that provides training, development and placements. It focuses on power electronics projects from IEEE transactions in 2014 related to topics like DC/DC converters, AC/DC converters, inverters, and renewable energy applications.
Model predictive-based shunt active power filter with a new reference current...Asoka Technologies
This study presents a new reference current estimation method using proposed robust extended complex Kalman filter (RECKF) together with model predictive current (MPC) control strategy in the development of a three-phase shunt active power filter (SAPF). A new exponential function embedded into the RECKF algorithm helps in the estimation of in phase fundamental component of voltage (vh) at the point of common coupling considering grid perturbations such as distorted voltage, measurement noise and phase angle jump and also for the estimation of fundamental amplitude of the load current (ih). The estimation of these two variables (vh, ih) is used to generate reference signals for MPC. The proposed RECKF-MPC needs less number of voltage sensors and resolves the difficulty of gain tuning of proportional–integral (PI) controller. The proposed RECKF-MPC approach is implemented using MATLAB/SIMULINK and also Opal-RT was used to obtain the real-time results. The results obtained using the proposed RECKF together with different variants of Kalman filters (Kalman filter (KF), extended KF (EKF) and extended complex KF (ECKF)) and PI controller are analysed both in the steady state as well as transient state conditions. From the above experimentation, it was observed that the proposed RECKF-MPC control strategy outperforms over PI controller and other variants of Kalman filtering approaches in terms of reference tracking error, power factor distortion and percentage total harmonic distortion in the SAPF system.
ASOKA TECHNOLOGIES
(B.TECH/M.TECH ELECTRICAL PROJECTS USING MATLAB/SIMULINK)
WE OFFER ACADEMIC MATLAB SIMULATION PROJECTS FOR
1. ELECTRICAL AND ELECTRONICS ENGINEERING [EEE]
2. POWER ELECTRONICS AND DRIVES [PED]
3. POWER SYSTEMS [PS]….etc
We will develop your OWN IDEAS and your IEEE Papers with extension if necessary and also we give guidance for publishing papers…
For Further Details Call Us @
0-9347143789/9949240245
For Abstracts of IEEE papers and for any Queries mail to: asokatechnologies(gmail) and also visit asokatechnologies(blogspot)
SKM Training Institute provides contact information for V.Gopi regarding final year IEEE projects in power electronics for 2014-2015. There are 23 project titles listed from SKMPE01 to SKMPE23 related to topics like boost converters, high step-up converters, bidirectional converters, voltage multiplier cells, electromagnetic energy harvesters, and motor drive systems. The projects were conducted during 2014-2015.
Pantech modern power system projects [simulink & m-file] 2016-17Senthil Kumar
Pantech provides power electronics projects using matlab and hardware design. We can support on all type of inverter, converter, Renewable sources both in simulation and hardware.We can support on PIC Controllers, dSPIC Controllers, DSP Processor and FPGA Processor. www.pantechproed.com
COORDINATED CONTROL AND ENERGY MANAGEMENT OF DISTRIBUTED GENERATION INVERTERS...ijiert bestjournal
In modern world,our entire life moves around Computers. Most of our tasks are dependent on the Computers,like Communication,Ticket Reservations,Researches,Printing,and Education etc. When we communicate with each other by using Computers through E Mails,a number of Computers are used for this purpose and the collection of these computers forms a network,which is called a Computer Network. As more and more peoples are going to be connected through the general network (INTERNET),the problem of security arises. Now a day,a number of security issues occur in networks which include Sniffing,Spoofing,Security Attacks,Malwares,Unauthorized Access,etc. This will create havoc for the users,who wants to communicate with each other through these networks. So,to make the communication between two users via the Computer Networks,we have to follow some security measures,which include using the Firewalls,Anti Malicious Software,Intrusion Detection Systems,Cryptography Techniques,et c. This paper is basically focused on how the communication between two users has been performed by using Computer Networks and how to make such a communication
Latest ieee 2016 projects titles in power electronics @ trichyembedded dreamweb
We are offering PROJECTS in EMBEDDED, MATLAB, NS2, VLSI, Power Electronics,Power Systems for BE- ECE & EEE Students.
Own Concepts also accepted.providing real time projects on MATLAB,EMB&VLSI for ECE Dept DreamwebTechnosolutions
73/5,3rd FLOOR,SRI KAMATCHI COMPLEX
OPP.CITY HOSPITAL (NEAR LAKSHMI COMPLEX)
SALAI ROAD,Trichy - 620 018,
Ph: 0431 4050403,7200021403/04.
This document lists 51 MATLAB projects related to power electronics, power systems, and PID control from IEEE 2017. The projects cover topics such as grid-connected PV converters, cascaded multilevel converters, active power filters, renewable energy systems, and motor drives. Vision Solutions provides engineering services and calls for collaboration on these projects in Hyderabad, Guntur, and Vijayawada, India.
The document lists 50 power electronics projects from IEEE publications in 2014. It includes the project title, domain, and year for each project. MSR Projects is an SSI certified institution that provides training, development and placements. It focuses on power electronics projects from IEEE transactions in 2014 related to topics like DC/DC converters, AC/DC converters, inverters, and renewable energy applications.
Model predictive-based shunt active power filter with a new reference current...Asoka Technologies
This study presents a new reference current estimation method using proposed robust extended complex Kalman filter (RECKF) together with model predictive current (MPC) control strategy in the development of a three-phase shunt active power filter (SAPF). A new exponential function embedded into the RECKF algorithm helps in the estimation of in phase fundamental component of voltage (vh) at the point of common coupling considering grid perturbations such as distorted voltage, measurement noise and phase angle jump and also for the estimation of fundamental amplitude of the load current (ih). The estimation of these two variables (vh, ih) is used to generate reference signals for MPC. The proposed RECKF-MPC needs less number of voltage sensors and resolves the difficulty of gain tuning of proportional–integral (PI) controller. The proposed RECKF-MPC approach is implemented using MATLAB/SIMULINK and also Opal-RT was used to obtain the real-time results. The results obtained using the proposed RECKF together with different variants of Kalman filters (Kalman filter (KF), extended KF (EKF) and extended complex KF (ECKF)) and PI controller are analysed both in the steady state as well as transient state conditions. From the above experimentation, it was observed that the proposed RECKF-MPC control strategy outperforms over PI controller and other variants of Kalman filtering approaches in terms of reference tracking error, power factor distortion and percentage total harmonic distortion in the SAPF system.
ASOKA TECHNOLOGIES
(B.TECH/M.TECH ELECTRICAL PROJECTS USING MATLAB/SIMULINK)
WE OFFER ACADEMIC MATLAB SIMULATION PROJECTS FOR
1. ELECTRICAL AND ELECTRONICS ENGINEERING [EEE]
2. POWER ELECTRONICS AND DRIVES [PED]
3. POWER SYSTEMS [PS]….etc
We will develop your OWN IDEAS and your IEEE Papers with extension if necessary and also we give guidance for publishing papers…
For Further Details Call Us @
0-9347143789/9949240245
For Abstracts of IEEE papers and for any Queries mail to: asokatechnologies(gmail) and also visit asokatechnologies(blogspot)
SKM Training Institute provides contact information for V.Gopi regarding final year IEEE projects in power electronics for 2014-2015. There are 23 project titles listed from SKMPE01 to SKMPE23 related to topics like boost converters, high step-up converters, bidirectional converters, voltage multiplier cells, electromagnetic energy harvesters, and motor drive systems. The projects were conducted during 2014-2015.
Pantech modern power system projects [simulink & m-file] 2016-17Senthil Kumar
Pantech provides power electronics projects using matlab and hardware design. We can support on all type of inverter, converter, Renewable sources both in simulation and hardware.We can support on PIC Controllers, dSPIC Controllers, DSP Processor and FPGA Processor. www.pantechproed.com
COORDINATED CONTROL AND ENERGY MANAGEMENT OF DISTRIBUTED GENERATION INVERTERS...ijiert bestjournal
In modern world,our entire life moves around Computers. Most of our tasks are dependent on the Computers,like Communication,Ticket Reservations,Researches,Printing,and Education etc. When we communicate with each other by using Computers through E Mails,a number of Computers are used for this purpose and the collection of these computers forms a network,which is called a Computer Network. As more and more peoples are going to be connected through the general network (INTERNET),the problem of security arises. Now a day,a number of security issues occur in networks which include Sniffing,Spoofing,Security Attacks,Malwares,Unauthorized Access,etc. This will create havoc for the users,who wants to communicate with each other through these networks. So,to make the communication between two users via the Computer Networks,we have to follow some security measures,which include using the Firewalls,Anti Malicious Software,Intrusion Detection Systems,Cryptography Techniques,et c. This paper is basically focused on how the communication between two users has been performed by using Computer Networks and how to make such a communication
Latest ieee 2016 projects titles in power electronics @ trichyembedded dreamweb
We are offering PROJECTS in EMBEDDED, MATLAB, NS2, VLSI, Power Electronics,Power Systems for BE- ECE & EEE Students.
Own Concepts also accepted.providing real time projects on MATLAB,EMB&VLSI for ECE Dept DreamwebTechnosolutions
73/5,3rd FLOOR,SRI KAMATCHI COMPLEX
OPP.CITY HOSPITAL (NEAR LAKSHMI COMPLEX)
SALAI ROAD,Trichy - 620 018,
Ph: 0431 4050403,7200021403/04.
This document discusses a project involving distributed generation and integration with the national grid. It includes:
- An overview of the project members and analogy of load sharing and individual contributions.
- Background on increasing power demand and the role of renewable resources in providing power.
- Topics to be covered including the grid simulation, PV array, CUK converter, three-phase inverter, and phase shifting transformer.
- Simulation results showing integration of renewable generation from a PV array with the grid using a phase shifting transformer to control power flow.
- Suggestions for possible modifications like adding an MPPT controller or hybrid energy system.
Permanent Magnet Synchronous Generator-Based Standalone Wind Energy Supply Sy...Asoka Technologies
In this paper, a novel algorithm, based on dc link voltage, is proposed for effective energy management of a standalone permanent magnet synchronous generator (PMSG)-based variable speed wind energy conversion system consisting of battery, fuel cell, and dump load (i.e., electrolyzer). Moreover, by maintaining the dc link voltage at its reference value, the output ac voltage of the inverter can be kept constant irrespective of variations in the wind speed and load. An effective control technique for the inverter, based on the pulse width modulation (PWM) scheme, has been developed to make the line voltages at the point of common coupling (PCC) balanced when the load is unbalanced. Similarly, a proper control of battery current through dc–dc converter has been carried out to reduce the electrical torque pulsation of the PMSG under an unbalanced load scenario. Based on extensive simulation results using MATLAB/SIMULINK, it has been established that the performance of the controllers both in transient as well as in steady state is quite satisfactory and it can also maintain maximum power point tracking.
IRJET- Dynamic Voltage Restorer Frame Work to Improve Power Quality of the Di...IRJET Journal
This document discusses a proposed framework for integrating ultracapacitors (UCAP) with a dynamic voltage restorer (DVR) to improve power quality on the distribution grid. The DVR compensates for voltage sags and swells by injecting voltage in-phase with the grid. Integrating UCAP provides active power support to handle deeper or longer disturbances without relying solely on the grid. Simulation results show the UCAP-DVR system can maintain constant load voltage during faults by injecting compensating voltage from the UCAP through a bi-directional DC-DC converter and three-phase inverter. This integration improves the DVR's capability to restore voltages during faults on the distribution grid.
This document provides a list of 71 titles related to power electronics research papers. It includes the paper titles and their corresponding codes. The document also provides contact information for Tema Solution, a company that provides more details on these papers available on their website at www.temasolution.com. Interested readers can send requests for more information to info@temasolution.com.
A NOVEL CONTROL STRATEGY FOR POWER QUALITY IMPROVEMENT USING ANN TECHNIQUE FO...IJERD Editor
The proposed system presents power-control strategies of a Micro grid-connected hybrid generation
system with versatile power transfer. This hybrid system allows maximum utilization of freely available
renewable energy sources like wind and photovoltaic energies. For this, an adaptive MPPT algorithm along with
standard perturbs and observes method will be used for the system.
The inverter converts the DC output from non-conventional energy into useful AC power for the
connected load. This hybrid system operates under normal conditions which include normal room temperature
in the case of solar energy and normal wind speed at plain area in the case of wind energy. However, designing
an optimal micro grid is not an easy task, due to the fact that primary energy carriers are changeable and
uncontrollable, as is the demand. Traditional design and optimization tools, developed for controlled power
sources, cannot be employed here. Simulation methods seem to be the best solution.
The dynamic model of the proposed system is first elaborated in the stationary reference frame and
then transformed into the synchronous orthogonal reference frame. The transformed variables are used in
control of the voltage source converter as the heart of the interfacing system between DG resources and utility
grid. By setting an appropriate compensation current references from the sensed load currents in control circuit
loop of DG, the active, reactive, and harmonic load current components will be compensated with fast dynamic
response, thereby achieving sinusoidal grid currents in phase with load voltages, while required power of the
load is more than the maximum injected power of the DG to the grid. In addition, the proposed control method
of this paper does not need a phase-locked loop in control circuit and has fast dynamic response in providing
active and reactive power components of the grid-connected loads.
We are offering PROJECTS in EMBEDDED, MATLAB, NS2, VLSI, Power Electronics,Power Systems for BE- ECE & EEE Students.
Own Concepts also accepted.providing real time projects on MATLAB,EMB&VLSI for ECE Dept DreamwebTechnosolutions
73/5,3rd FLOOR,SRI KAMATCHI COMPLEX
OPP.CITY HOSPITAL (NEAR LAKSHMI COMPLEX)
SALAI ROAD,Trichy - 620 018,
Ph: 0431 4050403,7200021403/04.
IRJET- A Review on Grid Connected Multi Array PV Battery based Bi-Directi...IRJET Journal
This document summarizes a research paper on a grid-connected photovoltaic (PV) battery system with a bidirectional DC-DC converter. The proposed system aims to satisfy load demand, manage power flow from PV, battery, and grid sources, inject excess power to the grid, and charge the battery from the grid. A bidirectional buck-boost converter is used to harness power from PV and control battery charging/discharging. A single-phase full-bridge bidirectional converter feeds AC loads and interacts with the grid. The proposed converter architecture has fewer conversion stages and components than existing hybrid systems, improving efficiency and reliability.
This document contains abstracts for several IEEE 2012 MATLAB projects related to power quality and control of power electronics systems. The abstracts discuss active power filters, voltage regulation techniques, induction motor drives, microgrids, and fuel cell energy systems. Simulation results were obtained using MATLAB/Simulink software.
The presentation discusses power management and control of a hybrid AC/DC microgrid integrated with renewable energy resources and electric vehicles. It provides an introduction to hybrid AC/DC microgrids and discusses challenges related to renewable energy sources and electric vehicles. The presentation outlines the research objectives which include impact analysis of electric vehicle penetration and developing grid-connected and islanding power control algorithms for the microgrid. It also provides a literature review and proposed methodology. Preliminary simulation results of the hybrid AC/DC microgrid are presented.
This document discusses DC microgrids and the research being done on them at Aalborg University. It provides an overview of the microgrid research programme, including its focus areas and team members. It then discusses various DC microgrid projects, from residential to industrial applications. It also covers DC microgrid control architectures, including primary, secondary and tertiary control levels.
This document is a seminar report on biometrics technology submitted by Pavan Kumar M.T. to fulfill requirements for a Bachelor of Engineering degree. The report provides an introduction to biometrics, which uses human physiological or behavioral characteristics to identify individuals. It discusses the history of biometrics and provides a block diagram of typical biometrics systems. It also classifies and describes various biometric techniques including fingerprints, face recognition, hand geometry, iris recognition, speaker recognition, signature recognition, and gesture recognition.
Flight data recorders, also known as black boxes, are electronic devices used to record parameters of an aircraft's performance. They consist of a flight data recorder and cockpit voice recorder. The first prototype flight data recorder was developed in 1956. Modern black boxes use solid state technology that can record up to 25 hours of flight data and survive extreme conditions like fires, crashes, and underwater submersion. Recorded data helps investigators determine the causes of accidents and prevent future incidents.
This document lists 107 power electronics projects conducted by SAK Informatics between 2014-2015. It provides the project codes, titles, and years for each project. It also lists the contact information for Mahesh Pala and the company email address.
BULK IEEE 2014-15 PROJECTS LIST FOR POWER ELECTRONICSShane Saro
ECRUITMENT SOLUTION provides bulk ieee projects to its regular clients and satisfies all their requirements on time, Also it provides 24/7 supports to all its clients in delivering the resources which is including source code delavery,Documents delivery,Algorithms delivery etc...,ECRUITMENT SOLUTIONS is also having around 100 clinets throughout India and across the World.
This document lists 102 power electronics project titles for final year IEEE projects for the years 2014-2015. It provides contact information for Praveen Kumar, including phone numbers and email, to obtain more details about the projects. The projects cover various topics related to power electronics, including DC-DC converters, inverters, motor drives, renewable energy applications, and more.
ACADEMIC MATLAB SIMULATION 2013/14 PROJECTS FOR
• ELECTRICAL AND ELECTRONICs ENGINEERING[EEE]
• POWER ELECTRONICs AND DRIVES[PED]
• POWER SYSTEMS[PS]….
We Can also Develop Your Own Ideas and Your IEEE Papers With Extension also…
For Further Details Call Us @ 0-9347143789/9949240245
Visit Us at: www.asokatechnologies.in
For Abstracts of IEEE papers and Any Queries mail to: asokatechnologies@gmail.com
This document provides a list of 57 technical papers published between 2010-2013 related to electrical engineering topics like power electronics, renewable energy, and control systems. It includes the paper titles and their respective years of publication. Contact information is also provided to inquire about further details.
This document lists 46 potential IEEE project titles related to power electronics from 2014-2015. The project titles cover a range of topics including photovoltaic applications, AC-DC converters, DC-DC converters, battery energy management, electric vehicles, and more. Contact information is provided to discuss potential projects.
This document discusses a project involving distributed generation and integration with the national grid. It includes:
- An overview of the project members and analogy of load sharing and individual contributions.
- Background on increasing power demand and the role of renewable resources in providing power.
- Topics to be covered including the grid simulation, PV array, CUK converter, three-phase inverter, and phase shifting transformer.
- Simulation results showing integration of renewable generation from a PV array with the grid using a phase shifting transformer to control power flow.
- Suggestions for possible modifications like adding an MPPT controller or hybrid energy system.
Permanent Magnet Synchronous Generator-Based Standalone Wind Energy Supply Sy...Asoka Technologies
In this paper, a novel algorithm, based on dc link voltage, is proposed for effective energy management of a standalone permanent magnet synchronous generator (PMSG)-based variable speed wind energy conversion system consisting of battery, fuel cell, and dump load (i.e., electrolyzer). Moreover, by maintaining the dc link voltage at its reference value, the output ac voltage of the inverter can be kept constant irrespective of variations in the wind speed and load. An effective control technique for the inverter, based on the pulse width modulation (PWM) scheme, has been developed to make the line voltages at the point of common coupling (PCC) balanced when the load is unbalanced. Similarly, a proper control of battery current through dc–dc converter has been carried out to reduce the electrical torque pulsation of the PMSG under an unbalanced load scenario. Based on extensive simulation results using MATLAB/SIMULINK, it has been established that the performance of the controllers both in transient as well as in steady state is quite satisfactory and it can also maintain maximum power point tracking.
IRJET- Dynamic Voltage Restorer Frame Work to Improve Power Quality of the Di...IRJET Journal
This document discusses a proposed framework for integrating ultracapacitors (UCAP) with a dynamic voltage restorer (DVR) to improve power quality on the distribution grid. The DVR compensates for voltage sags and swells by injecting voltage in-phase with the grid. Integrating UCAP provides active power support to handle deeper or longer disturbances without relying solely on the grid. Simulation results show the UCAP-DVR system can maintain constant load voltage during faults by injecting compensating voltage from the UCAP through a bi-directional DC-DC converter and three-phase inverter. This integration improves the DVR's capability to restore voltages during faults on the distribution grid.
This document provides a list of 71 titles related to power electronics research papers. It includes the paper titles and their corresponding codes. The document also provides contact information for Tema Solution, a company that provides more details on these papers available on their website at www.temasolution.com. Interested readers can send requests for more information to info@temasolution.com.
A NOVEL CONTROL STRATEGY FOR POWER QUALITY IMPROVEMENT USING ANN TECHNIQUE FO...IJERD Editor
The proposed system presents power-control strategies of a Micro grid-connected hybrid generation
system with versatile power transfer. This hybrid system allows maximum utilization of freely available
renewable energy sources like wind and photovoltaic energies. For this, an adaptive MPPT algorithm along with
standard perturbs and observes method will be used for the system.
The inverter converts the DC output from non-conventional energy into useful AC power for the
connected load. This hybrid system operates under normal conditions which include normal room temperature
in the case of solar energy and normal wind speed at plain area in the case of wind energy. However, designing
an optimal micro grid is not an easy task, due to the fact that primary energy carriers are changeable and
uncontrollable, as is the demand. Traditional design and optimization tools, developed for controlled power
sources, cannot be employed here. Simulation methods seem to be the best solution.
The dynamic model of the proposed system is first elaborated in the stationary reference frame and
then transformed into the synchronous orthogonal reference frame. The transformed variables are used in
control of the voltage source converter as the heart of the interfacing system between DG resources and utility
grid. By setting an appropriate compensation current references from the sensed load currents in control circuit
loop of DG, the active, reactive, and harmonic load current components will be compensated with fast dynamic
response, thereby achieving sinusoidal grid currents in phase with load voltages, while required power of the
load is more than the maximum injected power of the DG to the grid. In addition, the proposed control method
of this paper does not need a phase-locked loop in control circuit and has fast dynamic response in providing
active and reactive power components of the grid-connected loads.
We are offering PROJECTS in EMBEDDED, MATLAB, NS2, VLSI, Power Electronics,Power Systems for BE- ECE & EEE Students.
Own Concepts also accepted.providing real time projects on MATLAB,EMB&VLSI for ECE Dept DreamwebTechnosolutions
73/5,3rd FLOOR,SRI KAMATCHI COMPLEX
OPP.CITY HOSPITAL (NEAR LAKSHMI COMPLEX)
SALAI ROAD,Trichy - 620 018,
Ph: 0431 4050403,7200021403/04.
IRJET- A Review on Grid Connected Multi Array PV Battery based Bi-Directi...IRJET Journal
This document summarizes a research paper on a grid-connected photovoltaic (PV) battery system with a bidirectional DC-DC converter. The proposed system aims to satisfy load demand, manage power flow from PV, battery, and grid sources, inject excess power to the grid, and charge the battery from the grid. A bidirectional buck-boost converter is used to harness power from PV and control battery charging/discharging. A single-phase full-bridge bidirectional converter feeds AC loads and interacts with the grid. The proposed converter architecture has fewer conversion stages and components than existing hybrid systems, improving efficiency and reliability.
This document contains abstracts for several IEEE 2012 MATLAB projects related to power quality and control of power electronics systems. The abstracts discuss active power filters, voltage regulation techniques, induction motor drives, microgrids, and fuel cell energy systems. Simulation results were obtained using MATLAB/Simulink software.
The presentation discusses power management and control of a hybrid AC/DC microgrid integrated with renewable energy resources and electric vehicles. It provides an introduction to hybrid AC/DC microgrids and discusses challenges related to renewable energy sources and electric vehicles. The presentation outlines the research objectives which include impact analysis of electric vehicle penetration and developing grid-connected and islanding power control algorithms for the microgrid. It also provides a literature review and proposed methodology. Preliminary simulation results of the hybrid AC/DC microgrid are presented.
This document discusses DC microgrids and the research being done on them at Aalborg University. It provides an overview of the microgrid research programme, including its focus areas and team members. It then discusses various DC microgrid projects, from residential to industrial applications. It also covers DC microgrid control architectures, including primary, secondary and tertiary control levels.
This document is a seminar report on biometrics technology submitted by Pavan Kumar M.T. to fulfill requirements for a Bachelor of Engineering degree. The report provides an introduction to biometrics, which uses human physiological or behavioral characteristics to identify individuals. It discusses the history of biometrics and provides a block diagram of typical biometrics systems. It also classifies and describes various biometric techniques including fingerprints, face recognition, hand geometry, iris recognition, speaker recognition, signature recognition, and gesture recognition.
Flight data recorders, also known as black boxes, are electronic devices used to record parameters of an aircraft's performance. They consist of a flight data recorder and cockpit voice recorder. The first prototype flight data recorder was developed in 1956. Modern black boxes use solid state technology that can record up to 25 hours of flight data and survive extreme conditions like fires, crashes, and underwater submersion. Recorded data helps investigators determine the causes of accidents and prevent future incidents.
This document lists 107 power electronics projects conducted by SAK Informatics between 2014-2015. It provides the project codes, titles, and years for each project. It also lists the contact information for Mahesh Pala and the company email address.
BULK IEEE 2014-15 PROJECTS LIST FOR POWER ELECTRONICSShane Saro
ECRUITMENT SOLUTION provides bulk ieee projects to its regular clients and satisfies all their requirements on time, Also it provides 24/7 supports to all its clients in delivering the resources which is including source code delavery,Documents delivery,Algorithms delivery etc...,ECRUITMENT SOLUTIONS is also having around 100 clinets throughout India and across the World.
This document lists 102 power electronics project titles for final year IEEE projects for the years 2014-2015. It provides contact information for Praveen Kumar, including phone numbers and email, to obtain more details about the projects. The projects cover various topics related to power electronics, including DC-DC converters, inverters, motor drives, renewable energy applications, and more.
ACADEMIC MATLAB SIMULATION 2013/14 PROJECTS FOR
• ELECTRICAL AND ELECTRONICs ENGINEERING[EEE]
• POWER ELECTRONICs AND DRIVES[PED]
• POWER SYSTEMS[PS]….
We Can also Develop Your Own Ideas and Your IEEE Papers With Extension also…
For Further Details Call Us @ 0-9347143789/9949240245
Visit Us at: www.asokatechnologies.in
For Abstracts of IEEE papers and Any Queries mail to: asokatechnologies@gmail.com
This document provides a list of 57 technical papers published between 2010-2013 related to electrical engineering topics like power electronics, renewable energy, and control systems. It includes the paper titles and their respective years of publication. Contact information is also provided to inquire about further details.
This document lists 46 potential IEEE project titles related to power electronics from 2014-2015. The project titles cover a range of topics including photovoltaic applications, AC-DC converters, DC-DC converters, battery energy management, electric vehicles, and more. Contact information is provided to discuss potential projects.
This document lists 120 academic projects related to power electronics and electrical engineering from 2014-2015. It provides project codes, titles, and years for M.Tech students in EEE-Simulation. It also includes contact information for anyone seeking further details on the projects.
This document provides information about electrical projects using MATLAB/Simulink that can be developed for academic purposes. It lists 84 project codes along with the project title, year, and journal. It also provides contact information for Asokatechnologies, which can develop custom projects, provide guidance for publishing papers, and provide abstracts of past IEEE papers.
Latest 2014/15 B Tech and M Tech IEEE projects for EEE,Power Electronics and ...Asoka Technologies
This document provides information about electrical projects using MATLAB/Simulink that can be developed for academic purposes. It lists 84 project codes and titles from 2013 to 2010 in various journals like IEEE, IJETEE, and more. Custom projects can also be developed. Contact details are provided to discuss project details, abstracts, or queries.
ACADEMIC MATLAB SIMULATION 2014/15/16 PROJECTS FOR
• ELECTRICAL AND ELECTRONICs ENGINEERING[EEE]
• POWER ELECTRONICs AND DRIVES[PED]
• POWER SYSTEMS [PS]….
We Can also Develop Your Own Ideas and Your IEEE Papers With Extension also…
We also write papers for your projects and give guidance for paper publishing.
For Further Details Call Us @
0-9347143789/9949240245
Visit us at: www.asokatechnologies.in
For Abstracts of IEEE papers and For Any Queries
Mail us : asokatechnologies@gmail.com
Latest Electrical projects for BTech/MTech using Matlab/SimulinkAsoka Technologies
Asoka Technologies offer latest IEEE Electrical projects for BTech and MTech. We have many projects and we do provide abstract, paper explanation, simulink model explanation and exact results within time.
We do develop your own ideas also.
This document lists 55 M.E/M.Tech projects from 2015 related to power electronics. It provides the project title and publication source (IEEE 2015) for each project. It also provides contact information for GEST, including phone numbers and email, for those interested in the listed power electronics projects.
bulk ieee projects in pondicherry,best ieee projects in pondicherry,ieee pro...Nexgen Technology
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2015 latest IEEE electrical project list for BTech, Mtech, Phd Asoka Technologies
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This document lists 73 titles for final year composite materials and mechanical engineering projects for the years 2020-2021. It provides contact information for Praveen Kumar to obtain more details about the projects. The projects cover a wide range of topics including composite materials, mechanical properties testing, engine design, renewable energy technologies, and more.
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This document lists 220 potential final year automobile project titles for 2020-2021. It provides contact information for Praveen Kumar, who can be reached by phone or email. The projects cover a wide range of automotive technologies, including electric vehicles, alternative fuels, engine modifications, safety systems, and more.
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This document lists over 100 potential final year project titles related to embedded systems and Internet of Things (IoT) technologies across various application domains, such as medical and healthcare, smart homes, agriculture, transportation, and more. It provides contact information for Praveen Kumar to discuss project details. The titles are organized under categories like embedded handheld products, cyber physical systems, pervasive computing, energy management, bioscience, and others.
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Odoo provides an option for creating a module by using a single line command. By using this command the user can make a whole structure of a module. It is very easy for a beginner to make a module. There is no need to make each file manually. This slide will show how to create a module using the scaffold method.
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An import error occurs when a program fails to import a module or library, disrupting its execution. In languages like Python, this issue arises when the specified module cannot be found or accessed, hindering the program's functionality. Resolving import errors is crucial for maintaining smooth software operation and uninterrupted development processes.
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Tags: Information Security, ISO/IEC 27001, ISO/IEC 42001, Artificial Intelligence, GDPR
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Odoo 17 CRM allows us to track why we lose sales opportunities with "Lost Reasons." This helps analyze our sales process and identify areas for improvement. Here's how to configure lost reasons in Odoo 17 CRM
1. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
S.No PROJECT
CODE
PROJECT TITLES YEAR
1
NXGPE01
Dual Active Bridge-Based Battery Charger for Plug-in Hybrid Electric Vehicle with
Charging Current Containing Low Frequency Ripple
2015-2016
2
NXGPE02
New AC-DC Power Factor Correction Architecture Suitable for High Frequency
Operation
2015-2016
3
NXGPE03
Maximizing the Power Conversion Efficiency of Ultra-Low-Voltage CMOS Multi-
Stage Rectifiers
2015-2016
4
NXGPE04
A Multi-Input Bridgeless Resonant AC-DC Converter for Electromagnetic Energy
Harvesting
2015-2016
5
NXGPE05
Power Balance of Cascaded H-Bridge Multilevel Converters for Large-scale
Photovoltaic Grid Integration
2015-2016
6
NXGPE06
Effective Test Bed of 380-V DC Distribution System Using Isolated Power
Converters
2015-2016
7
NXGPE07
A Dual-Channel Calibration System for AC Currents and Small AC Voltages
2015-2016
2. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
8
NXGPE08 Design of Energy Control Method for Three-Phase Buck-Type Rectifier with Very
Demanding Load Steps to Achieve Smooth Input Currents
2015-2016
9
NXGPE09 A Novel Multi agent Control Scheme for Voltage Regulation in DC Distribution
Systems
2015-2016
10
NXGPE10 Implementation of Bridgeless Cuk Power Factor Corrector with Positive Output
Voltage
2015-2016
11
NXGPE11 Multiport DC-DC Autotransformer for Interconnecting Multiple High Voltage DC
Systems at low Cost
2015-2016
12
NXGPE12 Power Balance Optimization of Cascaded H-Bridge Multilevel Converters for
Large-scale Photovoltaic Integration
2015-2016
13
NXGPE13 Design of AC-DC PFC High-Order Converters with Regulated Output Current for
Low Power Applications
2015-2016
14
NXGPE14
Multiport DC-DC Autotransformer for Interconnecting Multiple High Voltage DC
Systems at low Cost
2015-2016
15
NXGPE15 Adaptive Hybrid Primary/Secondary-Side Digital Control for Series Resonant
DC–DC Converters in 48 V VR Applications
2015-2016
16
NXGPE16 Modular Multilevel Converter Design for VSC HVDC Applications 2015-2016
17
NXGPE17 Generation and Transmission of Electrical Energy in High-Altitude Wind Power
Generating System
2015-2016
3. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
18
NXGPE18 A Quasi-Z-Source Direct Matrix Converter Feeding a Vector Controlled Induction
Motor Drive
2015-2016
19
NXGPE19 Common-Mode Voltage and Vibration Mitigation of a Five-Phase Three-Level
NPC Inverter-Fed Induction Motor Drive System
2015-2016
20
NXGPE20 Control Strategy for Improved Dynamic Performance of Variable-Speed Drives
With Modular Multilevel Converter
2015-2016
21
NXGPE21 A Fixed-Switching-Frequency Integral Sliding Mode Current Controller for
Switched Reluctance Motor Drives
2015-2016
22
NXGPE22 Comparative Study of Wind Turbine Power Converters Based on Medium-
Frequency AC-Link for Offshore DC-Grids
2015-2016
23
NXGPE23 Experimental Comparison of a Direct Matrix Converter Using Si IGBT and sic
mosfets.
2015-2016
24
NXGPE24 The Hybrid-Cascaded DC–DC Converters Suitable for hvdc Applications 2015-2016
25
NXGPE25 A Non-isolated Three-port DC-DC Converter and Three Domain Control Method
for PV-Battery Power Systems
2015-2016
26
NXGPE26
High-Frequency-Link Based Grid-tied PV System with Small DC-link
Capacitor and Low-frequency Ripple-free Maximum Power Point Tracking
2015-2016
27
NXGPE27 Steady-state analysis of a zvs bidirectional isolated three-phase dc-dc converter
using dual phase-shift control with variable duty cycl
2015-2016
28
NXGPE28 Ripple Minimization Through Harmonic Elimination in Asymmetric Interleaved 2015-2016
4. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
Multiphase dc-dc Converters
29
NXGPE29 Coupled Inductors in Interleaved Multiphase Three-level DC-DC Converter for
High Power Applications
2015-2016
30
NXGPE30 Robust Global Stabilization of the DC-DC Boost Converter via Hybrid Control 2015-2016
31
NXGPE31 A Converter for Bipolar DC Link Based on SEPIC-Cuk Combination 2015-2016
32
NXGPE32 A Single Sensor Based MPPT Controller for Wind-Driven Induction Generators
Supplying DC Micro grid
2015-2016
33
NXGPE33 Steep Gain Bi-Directional Converter with a Regenerative Snubber 2015-2016
34
NXGPE34 Comprehensive DC Power Balance Management in High-Power Three-Level DC-
DC Converter for Electric Vehicle Fast Charging
2015-2016
35
NXGPE35 Series-Input Parallel-Output Modular-Phase DC-DC Converter with Soft Switching
and High Frequency Isolation
2015-2016
36
NXGPE36 Soft Switching PWM Cascaded Three-Level Combined DC-DC Converters with
Reduced Filters Size and Wide ZVS Load Range
2015-2016
37
NXGPE37 Novel High Step-Up DC–DC Converter With Active Coupled-Inductor Network for
a Sustainable Energy System
2015-2016
38
NXGPE38 Optimized Operation of Current-fed Dual Active Bridge DC-DC Converter for PV
Applications
2015-2016
5. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
39
NXGPE39 Variable-Frequency Phase Shift Modulation of a Dual Active Bridge Converter 2015-2016
40
NXGPE40 An Energy Management Strategy for a DC Distribution System for Power System
Integration of Plug-In Electric Vehicles
2015-2016
41
NXGPE41 MPPT with single DC-DC converter and inverter for grid connected hybrid wind-
driven PMSG-PV system
2015-2016
42
NXGPE42 A Zero-Voltage-Transition Bidirectional DC/DC Converter 2015-2016
43
NXGPE43 Fly back Mode for Improved Low-Power Efficiency in the Dual Active Bridge
Converter for Bi-directional PV Micro-Inverters with Integrated Storage
2015-2016
44
NXGPE44 Second-Order Sliding-Mode Controlled Synchronous Buck DC-DC Converter 2015-2016
45
NXGPE45 Hybrid Three-Level and Half-Bridge DC-DC Converter with Reduced Circulating
Loss and Output Filter Inductance
2015-2016
46
NXGPE46 Disturbance Observer Based Voltage Regulation of Current-Mode-Boost-
Converter-Interfaced Photovoltaic Generator
2015-2016
47
NXGPE47 A Function Based Maximum Power Point Tracking Method for Photovoltaic
Systems
2015-2016
48
NXGPE48 Evaluation of High Current Toroid Power Inductor with ndfeb Magnet for DC-DC
Power Converters
2015-2016
49
NXGPE49 The Modular Multilevel Converter for High Step-Up Ratio DC-DC Conversion 2015-2016
6. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
50
NXGPE50 Quasi Y-Source Boost DC-DC Converter 2015-2016
51
NXGPE51 Input-Series and Output-Series Connected Modular Output Capacitor Full-Bridge
PWM DC-DC Converter
2015-2016
52
NXGPE52 Three-Port DC/DC Converter with All Ports Current Ripple Cancellation Using
Integrated Magnetic Technique
2015-2016
53
NXGPE53 Full-Range Soft-Switching Isolated Buck-Boost Converters With Integrated
Interleaved Boost Converter and Phase-Shifted Control
2015-2016
54
NXGPE54 Design of Class E Resonant Rectifiers and Diode Evaluation for VHF Power
Conversion
2015-2016
55
NXGPE55 A Novel Power Converter Topology for Electrostatic Precipitators 2015-2016
56
NXGPE56 Performance Analysis of Bi-directional DC-DC Converters for Electric Vehicles 2015-2016
57
NXGPE57 Power Balance of Cascaded H-Bridge Multilevel Converters for Large-scale
Photovoltaic Integration
2015-2016
58
NXGPE58 Transient DC Bias and Current Impact Effects of High-Frequency-Isolated
Bidirectional DC-DC Converter in Practice
2015-2016
59
NXGPE59 Multiport DC-DC Autotransformer for Interconnecting Multiple High Voltage DC
Systems at low Cost
2015-2016
60
NXGPE60 The Hybrid-Cascaded DC–DC Converters Suitable for HVdc Applications 2015-2016
61
NXGPE61 A Three-Phase AC-AC Converter in Open-Delta Connection Based on Switched 2015-2016
7. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
Capacitor Principle
62
NXGPE62 A Bridgeless BHB ZVS-PWM AC-AC Converter for High-Frequency Induction
Heating Applications
2015-2016
63
NXGPE63 Magnetic Integration of Discrete Coupled Inductors in Single-Phase Direct
PWM AC-AC Converters
2015-2016
64
NXGPE64 A Maximum Power Density Design Method for Nine-Switch Matrix
Converter using SiC-MOSFET
2015-2016
65
NXGP65 An AC Z-source Converter Based on Gamma Structure with Safe-Commutation
Strategy
2015-2016
66
NXGPE66 Three-Phase AC-AC Converter With Controllable Phase and Amplitude 2015-2016
67
NXGPE67 Power converters, control, and energy management for distributed generation 2015-2016
68
NXGPE68 A Cascade Point of Load DC-DC Converter with a Novel Phase Shifted Switched
Capacitor Converter Output Stage.
2015-2016
69
NXGPE69 A Bidirectional Multiple-Input Multiple-Output Modular Multilevel DC-DC
Converter and its Control Design
2015-2016
70
NXGPE70 Universal High-Frequency-Link Characterization and Practical Fundamental-
Optimal Strategy for Dual-Active-Bridge DC-DC Converter under PWM plus
Phase-Shift Control
2015-2016
71
NXGPE71 Large-Signal Characterization of Power Inductors in EV Bidirectional DC–DC
Converters Focused on Core Size Optimization
2015-2016
72
NXGPE72 Fuel cell condition monitoring system based on interconnected DC-DC
converter and voltage monitor
2015-2016
8. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
73
NXGPE73 A Single-Inductor Multiple-Output Auto-Buck-Boost DC-DC Converter with Auto
Phase Allocation
2015-2016
74
NXGPE74 A High Efficiency Input/output Magnetically Coupled Interleaved Buck-
Boost Converter with Low Internal Oscillation for Fuel-Cell Applications: CCM
Steady State Analysis
2015-2016
75
NXGPE75 Bidirectional Resonant DC-DC Step-up Converters for Driving High-Voltage
Actuators in Mobile Micro robots
2015-2016
76
NXGPE76 Identification and Robust Control of a Quadratic DC/DC Boost Converter by
Hammerstein Model
2015-2016
77
NXGPE77 Optimum Structures of Proposed New Cascaded Multilevel Inverter with
Reduced Number of Components
2015-2016
78
NXGPE78 A Simplified Space Vector Modulation Scheme for Multilevel Converters 2015-2016
79
NXGPE79 An Innovative Scheme of Symmetric Multilevel Voltage Source Inverter with
Lower Number of Circuit Devices
2015-2016
80
NXGPE80 A Real-Time Selective Harmonic Elimination Based on A Transient-free, Inner
Closed-Loop Control for Cascaded Multilevel Inverters
2015-2016
81
NXGPE81 Single Stage Fuel Cell to Grid Interface with Multilevel Current Source Inverters 2015-2016
82
NXGPE82 A Novel Five-Level Voltage Source Inverter with Sinusoidal Pulse Width Modulator
for Medium-Voltage Applications
2015-2016
83
NXGPE83 Fundamental Switching Frequency Optimal Pulse Width Modulation of Medium 2015-2016
9. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
Voltage Cascaded Seven-Level Inverter
84
NXGPE84 Modeling, Control Design and Analysis of a Startup Scheme for Modular
Multilevel Converters
2015-2016
85
NXGPE85 Performance of Three-Phase Asymmetric Cascaded Bridge Multilevel Inverter 2015-2016
86
NXGPE86 An Energy Stored Quasi-Z Source Cascade Multilevel Inverter based Photovoltaic
Power Generation System
2015-2016
87
NXGPE87 Single-Carrier Phase-Disposition PWM Implementation for Multi-level Flying
Capacitor Converters
2015-2016
88
NXGPE88 Control and Stability Analysis of Modular Multilevel Converter under Low-
frequency Operation
2015-2016
89
NXGPE89 Soft-Switching Operation of Isolated Modular DC/DC Converters for Application in
HVDC Grids
2015-2016
90
NXGPE90 Zero-Voltage Ride-Through Capability of a Transformer less Back-To-Back System
Using Modular Multilevel Cascade Converters for Power Distribution Systems
2015-2016
91
NXGPE91 Design and Control of Modular Multilevel Converters for Battery Electric Vehicles 2015-2016
92
NXGPE92 Robust and Generic Control of Full-Bridge Modular Multilevel Converter High-
Voltage DC Transmission Systems
2015-2016
93
NXGPE93 Cascaded H-Bridge Multilevel Inverter System Fault Diagnosis Using a PCA and
Multi-class Relevance Vector Machine Approach
2015-2016
94
NXGPE94 A Single-Objective Predictive Control Method for a Multivariable Single-Phase 2015-2016
10. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
Three-Level NPC Converter-Based Active Power Filter
95
NXGPE95 Single Stage Fuel Cell to Grid Interface with Multilevel Current Source Inverters 2015-2016
96
NXGPE96 The Modular Multilevel Converter for High Step-Up Ratio DC-DC Conversion 2015-2016
97
NXGPE97 Optimization-based Cell Selection Method for Grid-connected Modular Multilevel
Converters
2015-2016
98
NXGPE98 Power Balance of Cascaded H-Bridge Multilevel Converters for Large-scale
Photovoltaic Grid Integration
2015-2016
99
NXGPE99 A Novel Five-Level Voltage Source Inverter with Sinusoidal Pulse Width
Modulator for Medium-Voltage Applications
2015-2016
100
NXGPE100 A Bidirectional Multiple-Input Multiple-Output Modular Multilevel DC-DC
Converter and its Control Design
2015-2016
101
NXGPE101 Control of Arm Capacitor Voltages in Modular Multilevel Converters 2015-2016
102
NXGPE102 Switching Frequency Analysis of Staircase Modulated Modular Multilevel
Converters and Equivalent PWM Techniques
2015-2016
103
NXGPE103 Fundamental Switching Frequency Optimal Pulse Width Modulation of Medium
Voltage Cascaded Seven-Level Inverter
2015-2016
104
NXGPE104 A New Fault-Tolerant Strategy Based on a Modified Selective Harmonic
Technique for Three Phase Multilevel Converters
2015-2016
105
NXGPE105 Multilevel Energy Management System for Hybridization of Energy Storages in 2015-2016
11. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
DC Micro grids
106
NXGPE106 Shunt Active Power Filter With Open-End Winding Transformer and Series
Connected Converters
2015-2016
107
NXGPE107 Impact of Grid Asymmetries on the Operation and Capacitive Energy Storage
Design of Modular Multilevel Converters
2015-2016
108
NXGPE108 The Impact of Voltage-Balancing Control on Switching Frequency of the Modular
Multilevel Converter
2015-2016
109
NXGPE109 Zero-Sequence Voltage Injection for DC Capacitor Voltage Balancing Control of
the Star-Connected Cascaded H-Bridge PWM Converter under Unbalanced Grid
2015-2016
110
NXGPE110 A Hybrid Modular Multilevel Converter with Novel Three-level Cells for DC Fault
Blocking Capability
2015-2016
111
NXGPE111 DC Voltage Compensation Strategy for Parallel Hybrid Multilevel Voltage Source
Converter
2015-2016
112
NXGPE112 A Modified Modular Multilevel Converter with Reduced Capacitor Voltage
Fluctuation
2015-2016
113
NXGPE113 Operation of Cascaded H-Bridge Multilevel Converters for Large-scale
Photovoltaic Power Plants under Bridge Failures
2015-2016
114
NXGPE114 Analysis and design of modified half-bridge series resonant inverter with dc-link
neutral point clamped cell
2015-2016
115
NXGPE115 Soft Switching DC-DC Converter for Distributed Energy Sources With High Step Up
Voltage Capability
2015-2016
12. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
116
NXGPE116 An Improved Capacitor Voltage Balancing Method for Five-Level Diode-Clamped
Converters with High Modulation Index and High Power Factor
2015-2016
117
NXGPE117 PWM Plus Secondary-Side Phase-Shift Controlled Soft-Switching Full-Bridge
Three-Port Converter for Renewable Power Systems
2015-2016
118
NXGPE118 Novel High Step-Up DC–DC Converter With Active Coupled-Inductor Network for
a Sustainable Energy System
2015-2016
119
NXGPE119 Analysis and design of modified half-bridge series resonant inverter with dc-link
neutral point clamped cell
2015-2016
120
NXGPE120 Single Power-Conversion AC--DC Converter With High Power Factor and High
Efficiency
2015-2016
121
NXGPE121 A Capacitor Voltage Balancing Method for Nested Neutral Point Clamped(NNPC)
Inverter
2015-2016
122
NXGPE122 DCM Analysis of Single-switch-based ZVZCS Converters with a Tapped Inductor 2015-2016
123
NXGPE123 A New Center-Tapped Half-Bridge Zeta Converter with Small Transformer DC-
Offset Current and Low Voltage Stress
2015-2016
124
NXGPE124 A Quasi-Uni-polar SPWM Full-Bridge Transformer less PV Grid-Connected
Inverter with Constant Common-Mode Voltage
2015-2016
125
NXGPE125 A Bridgeless BHB ZVS-PWM AC-AC Converter for High-Frequency Induction
Heating Applications
2015-2016
126
NXGPE126 New Modulation Scheme for 3-level Active Neutral Point Clamped Converter
with Loss and Stress Reduction
2015-2016
13. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
127
NXGPE127 Analysis and Design of LLC Resonant Converters With Capacitor–Diode
Clamp Current Limiting
2015-2016
128
NXGPE128 A Fully Soft-Switched Single Switch Isolated DC–DC Converter 2015-2016
129
NXGPE129 Compensation of Nonlinearities in Diode-Clamped Multilevel Converters 2015-2016
130
NXGPE130 A Bidirectional Three-level LLC Resonant Converter with PWAM Control 2015-2016
131
NXGPE131 Integrated Dual Full-Bridge converter with Current-Doublers Rectifier for EV
charger
2015-2016
132
NXGPE132 New AC-DC Power Factor Correction Architecture Suitable for High Frequency
Operation
2015-2016
133
NXGPE133 A New PWM Strategy for Grid-Connected Half-Bridge Active NPC Converters With
Losses Distribution Balancing Mechanism
2015-2016
134
NXGPE134 A Torque Ripple Compensation Technique for a Low Cost Brushless DC Motor
Drive
2015-2016
135
NXGPE135 Current Limit Strategy for BLDC Motor Drive with Minimized DC-Link Capacitor 2015-2016
136
NXGPE136 Improving the Dynamic Stiffness in a Self-sensing BLDC Machine Drive Using
Estimated Load Torque Feed forward
2015-2016
137
NXGPE137 Influence of Phase Magnetic Couplings on Phase Current Characteristics of a
Multiphase BLDC Machines with Overlapping Phase Windings
2015-2016
138
NXGPE138 Position Sensor less Control without Phase Shifter for High-speed BLDC Motors
with Low Inductance and Non ideal Back EMF
2015-2016
14. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
139
NXGPE139 Design constraints of small single-phase permanent magnet brushless DC drives
for a cooling application
2015-2016
140
NXGPE140 A Back-EMF Threshold Self-sensing Method to Detect the Commutation Instants
in BLDC Drives
2015-2016
141
NXGPE141 Comparison Analysis of Demagnetization and Torque ripple in accordance with
Freewheeling Current in PM BLDC Motor
2015-2016
142
NXGPE142 Diagnosis of Induction Motors under Varying Speed Operation by Principal Slot
Harmonic Tracking
2015-2016
143
NXGPE143 An Enhanced Bi-spectrum Technique With Auxiliary Frequency Injection for
Induction Motor Health Condition Monitoring
2015-2016
144
NXGPE144 Induction Motor Efficiency Evaluation Using a New Concept of Stator Resistance 2015-2016
145
NXGPE145 A Speed-Sensor less FS-PTC of Induction Motors Using Extended Kalman Filters 2015-2016
146
NXGPE146 A Low-Speed, High-Torque Motor Drive Using a Modular Multilevel Cascade
Converter Based on Triple-Star Bridge Cells (MMCC-TSBC)
2015-2016
147
NXGPE147 Power Spectrum-Based Detection of Induction Motor Rotor Faults for Immunity
to False Alarms
2015-2016
148
NXGPE148 mInduction Motor Control: Multivariable Analysis and Effective Decentralized
Control of Stator Currents for High Performance Applications
2015-2016
149
NXGPE149 Maximum Efficiency per Torque Direct Flux Vector Control of Induction
Motor Drives
2015-2016
15. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
150
NXGPE150 Magnetizing Curve Estimation of Induction Motors in Single-phase Magnetization
Mode Considering Differential Inductance Effect
2015-2016
151
NXGPE151 Transient-based rotor cage assessment in induction motors operating with soft-
starters
2015-2016
152
NXGPE152 Simple Flux Regulation for Improving State Estimation at Very Low and Zero
Speed of a Speed Sensor less Direct Torque Control of Induction Motor Drive
2015-2016
153
NXGPE153 Stationary Frame Induction Motor Feed Forward Current Controller With Back
EMF Compensation
2015-2016
154
NXGPE154 Field Path Design Assessments of A High-performance Small-Power Synchronous
Reluctance Motor
2015-2016
155
NXGPE155 A Novel Technique for Reducing Leakage Current by Application of Zero-Sequence
Voltage
2015-2016
156
NXGPE156 A Novel Neural Network Vector Control Technique for Induction Motor Drive 2015-2016
157
NXGPE157 Analysis and Implementation of Parallel Connected Two Induction Motor Single
Inverter Drive by Direct Vector Control for Industrial Application
2015-2016
158 NXGPE158 Design and Analysis of A Double Sided Linear Induction Motor for Transportation 2015-2016
159 NXGPE159 Modeling and Analysis of Unbalanced Magnetic Pull in Cage Induction
Motors with Curved Dynamic Eccentricity
2015-2016
160 NXGPE160 Research on a Linear Permanent Magnet Brushless DC Motor for Electromagnetic 2015-2016
16. NEXGEN TECHNOLOGY
FINAL YEAR IEEE PROJECTS TITLES 2015-2016(POWER ELECTRONICS)
CONTACT: PRAVEEN KUMAR. L (+91 – 9751442511, +91 – 9791938249)
MAIL ID: sunsid1989@gmail.com, praveen@nexgenproject.com
Catapult
161 NXGPE161 Comparative Study of Predictive and Resonant Controllers in Fault-Tolerant Five-
phase Induction Motor Drives
2015-2016
162 NXGPE162 An Improved Model Predictive Torque Control Without Weighting Factors
for Induction Motor Drives
2015-2016
163 NXGPE163 Advanced Integrated Modeling and Analysis for Adjustable Speed Drives
of Induction Motors Operating With Minimum Losses
2015-2016
164 NXGPE164 High Weighted Efficiency in Single Phase Solar Inverters by a Variable Frequency
Peak Current Controller
2015-2016
165 NXGPE165 Synchronous Generator Emulation Control Strategy for Voltage Source Converter
(VSC) Stations
2015-2016
166 NXGPE166 Implementation of New Maximum Power Point Tracking Technique for Partially
Shaded PV System Using Hybrid DEPSO Method
2015-2016
167 NXGPE167 Low-Volume PFC Rectifier Based on Non symmetric Multilevel Boost Converter 2015-2016