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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 32
Smart Management of EV Charging Station
Paneri Avkirkar
Computer Science and
Technology Usha Mittal Institute of
Technology
Aayushi Gajbhiye
Computer Science and
Technology Usha Mittal Institute
of Technology
Riddhi Kabra
Computer Science and
Technology Usha Mittal Institute of
Technology
Monica Charate
Computer Science and
Technology Usha Mittal Institute of
Technology
Ankita Umale
Computer Engineering
Usha Mittal Institute of Technology
--------------------------------------------------------------------------***---------------------------------------------------------------------------
Abstract—In today’s world, Electric Vehicles(EVs)
are dras- tically evolving. General public transport as
buses, autos, taxis, etc., are rapidly being replaced by
EVs, the major cause for this is the rapidly
increasing fossil fuel price and the limitedresource
available. We observe people switching to EVs but
still facing charging issues. The proposed system
will work onthis issue by displaying charging stations,
providing the userwith a slot at the nearest charging
station, guiding them to the destination via GMAPS
API, a chatbot for queries and displaying the battery
percentage so that they are always aware of the
currently available battery.
Index Terms—EV; Battery Percentage; GMAPS; Slots.
I. INTRODUCTION
In recent years, there has been a significant focus on
electric vehicles (EVs) as a source to reduce the use of
fossil fuels and cutting the extra use of these gases, also
saving the ozone layer. EVs utilize rechargeable batteries
that can be recharged by plugging into charging stations or
electrical outlets. The development of this technology has
resulted in a range of EV models, from compact city cars
to large trucks.
EVs are becoming increasingly popular worldwide, with
both automakers and governments advocating for their
adoptionas a way to mitigate air pollution and improve
public health. In addition to being environmentally
friendly, there are many benefits of using EVs such as
there is no engine thus the sound is effectively reduced,
very light weight so effortlessly used by number of people,
also cost of purchase and maintenance is a lot cheaper as
compared to conventional vehicles Our proposed system
gives an idea on how EVs operates, including their history,
technology, benefits, and limitations. Furthermore, this
article will examine the current state of the electric
vehicle market and the challenges hindering the
widespread adoption of electric vehicles. Finally, the
document will offer recommendations to policymakers and
stakeholders to expedite the transition to electric vehicles,
including the launch and marketing of new EV models.
Car manufacturers such as Tesla and Tata have recently
introduced new electric vehicle models to the market. To
reserve one of these vehicles, users are required to pay a
portion of the total cost online. Our system will employ the
Google Maps slotting strategy and API to generate the
quickest route to a charging station. The chatbot system
software will use text commands to operate. Specific
charging stations are dedicated to charging electric
vehicles, although it should be noted that under current
conditions, approximately 4,444 cars would require at
least 15 to 30 minutes to fully charge.
A. Objective
The objective of this project is to provide an efficient and
convenient charging slot booking system for electric vehicle
(EV) car owners. The project aims to design a simple and
user- friendly interface that can be easily understood by
everyone. Italso aims to connect multiple charging stations
together via a single system and provide users with details
about the nearest stations and routes to reach them
through maps. The overall objective is to simplify the
process of booking and charging EVs, making it more
accessible to users.
II. OBJECTIVE AND SCOPE
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 33
B. Scope
The scope of this project is to provide a fast and easy
way for customers to book charging slots at EV charging
stations. By implementing this system, users will be able to
save time and easily find available charging slots at nearby
stations. The project will also enable the connection of
multiple charging stations through a single system, making
it more efficientand cost-effective. Additionally, users will
be able to access information about the nearest charging
stations and navigateto them using maps.
III. REVIEW OF LITERATURE
Mohsen Ahmadi; N. Mithulananthan; Rahul Sharma ”A
review on topologies for fast charging stations for
electricvehicles”. This article [1] presents a topological
inventoryof charging stations available in the literature.
Currently, 50 kW fast chargers capable of charging an
average electric car in about an hour are already on
the market. However, a fast charging level of 240 kW
capable of recharging a typical electric vehicle in 10
minutes has been introduced into the standard. These
high-powered fast chargers should be available soon.
When several electric vehicles charge quickly
simultaneously, charging stations must provide charging
power in the order of several megawatts.
Akinwole, OO and Oladimeji, TT ”Design and
implementation of arduino microcontroller based
automatic lighting control with I2c LCD display”. In this
paper [2] we understand how to setup basic arduino
system with lcd in order to display the voltage,battery
percentage, etc., and also aboutthe different components
involved, the resistors used. The paper is also meant to
provide socio economic benefits as well.
Ferreira, João C. and Monteiro, Vı́tor and Afonso, João
Luiz ”Smart Electric Vehicle Charging System”. In this
paper [3] the proposed smart electric vehicle charging
system connects electric vehicles and renewables to a
smart grid (SG) using vehicle-to-grid (V2G) technology. In
addition, the system seeks a new paradigm in the power
market (EM) through deregulation of power generation
and use to obtain the best conditions for
commercialization of power.
Achmad fitro Research Gate oct 2008 “Shortest
Route at Dynamic Location with Node Combination-
Dijkstra Algorithm”. This paper [4] describes the
modification in the node combination algorithm to find the
shortest route. The issue of determining the shortest path
from the dynamic positions collected from the fleet is
resolved in this paper.
Rahul George, Srikumar Vaidyanathan, K Deepa ”EV
Charging Station Locator With Slot Booking System”. The
paper [5] states the benefit of replacing fuel based vehivles
with electric vehicles, the paper also discusses about the
excess carbon outlet by fuel based vehicles which can be
reduced using electric vehicle. A vehicle to grid system
is used in this paper which deals with saving of excess of
power stored in the battery and effictively sending it back
to the grid in order to avoid the power wastage and
reduce the amountof power consumption
Heiko Knospe, Scarlet Schwiderski-Grosche “Online
Paymentfor Access to Heterogeneous Mobile Networks”.
This paper
[6] explains the architecture where access to different
mobile networks is given based on an online payment
systems. Subscribed post-pay customers can use the GSM
networks. Using technology, prepay users may also receive
services from operators. This paper proposed an advanced
design that uses an application for payments.
Ange Ouya, Blanca Martinez De Aragon, Cecile Bouette
”An Efficient Electric Vehicle Charging Architecture
basedon LoRa Communication” This paper [7] proposed
a new communication method between Electrical vehicles
and Charging stations. This method manages the energy
generatedby solar panels that EVs need. As a result, locally
installed panels are major shift in the field of energy. This
article aims to improve the generated solar panels energy
required forelectric vehicles.
Puja Singh Pinki Nayak Arpita Datta Depansha Sani Garima
Raghav Rahul Tejal “Voice Control Device using Raspberry
Pi”. This paper [8] the voice control device uses Raspberry
Pi.It uses Query Processing; with the help of NLP it extracts
the required meaningful text from the command given by
the user.With the help of text to speech engine, it gives the
output to the user in the form of a voice. The limitations of
this system are that it requires the Raspberry Pi as a
hardware device and we are implementing this algorithm
directly on android device.
Binod Vaidya1 Hussein T. Mouftah IET “Smart Electric
Vehicle Charging Management for Smart Cities”. In this
paper [9] they developed an intelligent electric vehicle
charging management system, which uses charging
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 34
strategies including an efficient reservation system and
allotment of charging station locations. Calculating the
overall price including the period of waiting, period of
charging, approximated charging cost, and customer
dissatisfaction factors in this approach, the planned
scheme will provide a better solution.
Qinglong Wang, Xue Liu, Jian Du, and Fanxin Kong
”Smart Charging for Electric Vehicles: A Survey From the
Algorithmic Perspective”. In this paper [10] a survey is
done with the help of algorithmns to gain a particular
outcome. We gone through the different various proposed
theories in the paper, like how they used them in the paper
for the electric vehicle charging system. Later all the
related uncertainities and probabilities were discussed
in the paper taking all ofthem in consideration.
IV. METHODOLOGY
In the recent era where global warming and scarcity of
fossil fuels are leading to major problems.To solve this
problems renewable resources have proved to be boon
for man kind. In Japan, the introduction of Feed-in
tariffs (FIT) has led to the rapid expansion of
photovoltaic systems. However, the increased output
power from these system might face repercussions on the
basis of frequency and distribution voltage, leading the
Japanese government to reconsider theFIT system.
To address this problem, a Smart EV Charging Station
System is proposed as an aggregator, utilizing a fixed
battery for electricity trading. This system provides a
platform for booking charging slots at nearest charging
stations according to the needs of the customer. Features
such as AI chatbots for booking, map integration for
direction sensing, notifications, and emails are included.
Electric vehicles runs on battery and can be charged
used on the basis of battery requirements and their
socket type, time for charging. The basics and features
required for EV chargers are also discussed, there is also
huge requirement of EV charging connection.
The proposed Smart EV Charging Station System
includes a slot booking system for charging EVs,
categorized by charging socket type. The system utilizes
GMAPS API to show the shortest route to reach the
destination. The system uses AI for chatbot assistance and
MySQL databases for storing system logs and slot
management.
Continuous battery monitoring helps to alert the user to
chargethe battery at the nearest charging station. An ESP32
micro- controller is used to achieve continuous battery
monitoring. The device continuously monitors the battery
level every 5 secsand sends battery level data to the system
through bluetooth connectivity. The user gets an alert
notification when the EV battery goes below the 20%,
10% or as per-user-defined percentage. The device
interface with LCD helps the users to view the current
battery status while driving.
A. Architectural Overview
Figure 1 shows the booking system architecture that we
have used in the designing of the system.
Fig. 1. Booking System Architecture
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 35
Figure 2 shows the flow of events in our slot booking
system from registration till confirmation.
Fig. 2. System Flowchart
Figure 3 shows the architecture of the station system
Fig. 3. Station System Architecture
B. UML Diagrams
Figure 4 is the class diagram of our system. Here in this
diagram, There are 2 classes. The User and the System. Each
class has its attributes and operations. The user registers in
registration and logins into the system. He can search the
locations and view the results. And the system displays the
chatbot and shows the map.
Fig. 4. Class Diagram
Use case dig of our system is depicted in Figure 5. The use
case diagram of our system has two actor that is the user
and the admin. The user is directly related to registration,
log in, searching charging slot, asking question, using
chatbot and receiving notifications and the admin handles
the registration, slot booking, etc. activities.
Fig. 5. Use Case Diagram
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 36
Component diagram of our system is displayed in Figure 6.
In the diagram components communicate with each other
using interfaces. The interfaces are linked using
connectors. In our system we have 6 components namely
JDK, Client, MySQL, .jar and .exe that is connected with the
main web server. These components interact with each
other when required and revert back to the main web
server.
Fig. 6. Component Diagram
Figure 7 shows the deployment of the system. In this dia-
gram, a node represents the client’s computer. A
component represents the web browser that is linked to
the web pages. There’s an interaction between the Clients
computer and the web server. Web browsers and web pg
depend on the web servers’ HTTP and SSL. And java
servlet depends on MySQLas a database server. These 3
nodes i.e. a client computer, web server, and database
server are connected with a TCP/IP connection.
Fig.7. Deployment Diagram
V. RESULT
Figure 8 shows the LCD display that is connected with the
bateery that displays the current battery percentage of the
battery.
Fig. 8. LCD Display
Figure 9 is the final system that shows the LCD sisplay
along with the system sdk present in the mobile. Both the
LCD screen and the system displays the battery percentage.
The system sdk also have the feature of slot booking,
GMAPSAPI to guide you to the nearest charging station.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 37
Fig. 9. LCD Display and Mobile SDK Connectivity
Figure 10 displays the Main page of the system from
where we can navigate different menus present on the
page.
Fig. 10. Main Menu
Figure 11 shows the about us option that gives the brief
description about our company and contact us where the
user can contact us.
Fig. 11. About us and Contact us
Figure 12 displays the user registration menu where the
new user can register and move forward to book their
slots.
Fig. 12. User Registration Page
Figure 13 displays the user login page where the already
registered customer can log in and move forward to book
the slot
Fig. 13. User Login Page
Figure 14 displays the screen which gives the details of
their booking and the GMAP API to book a charging
station.
Fig. 14. Slot Details
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 38
Figure 15 shows the map that direct us to the booked
chargingstation.
Fig. 15. Map
Fig. 17. System login
System is developed as a Smart Management of EV
Charging Stations with a hybrid approach of android
application devel- opment. The system also contains a LCD
display indicating the battery percentage which is also
reflected in the application. This system also contains the AI
chatbot for query solving as well as GMAPS API for
direction sensing.
This project can be transformed into a proper android/ios
application or else can be installed in the electric vehicles
according to different battery and expand it to a large scale
project.
There will also be a system login menu which can only be
accessed by the admin from where the admin can view the
slots, add more slots and add or delete more slots Figure
16,17shows the admin panel from where admin can add
charging slot and see the slot details
Fig. 16. Adding slot
VI. CONCLUSION
VII. FUTURE WORK
REFERENCES
[1] Mohsen Ahmadi, N Mithulananthan, and Rahul
Sharma. “A review on topologies for fast charging
stations for electric vehicles”. In: 2016 IEEE
International Con- ference on Power System
Technology (POWERCON). IEEE. 2016, pp. 1–6.
[2] OO Akinwole and TT Oladimeji. “Design and imple-
mentation of arduino microcontroller based
automatic lighting control with I2c LCD display”. In: J
Electr Electron Syst 7.258 (2018), pp. 2332–0796.
[3] João C. Ferreira, Vı́tor Monteiro, and João Luiz Afonso.
“Vehicle-to-Anything Application (V2Anything App)
for Electric Vehicles”. In: IEEE Transactions on In-
dustrial Informatics 10.3 (2014), pp. 1927–1937. DOI:
10.1109/TII.2013.2291321.
[4] Achmad Fitro, Suryono Suryono, and Retno Kusuman-
ingrum. “Shortest Route at Dynamic Location with
Node Combination-Dijkstra Algorithm”. In: (2018).
[5] Rahul George, Srikumar Vaidyanathan, and K Deepa.
“Ev charging station locator with slot booking sys-
tem”. In: 2019 2nd International Conference on Power
and Embedded Drive Control (ICPEDC). IEEE. 2019, pp.
342–348.
[6] Heiko Knospe and Scarlet Schwiderski-Grosche. “On-
line payment for access to heterogeneous mobile net-
works”. In: IST Mobile & Wireless Telecommunications
Summit. 2002, pp. 748–752.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072
© 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 39
[7] Ange Ouya et al. “An efficient electric vehicle charging
architecture based on LoRa communication”. In: 2017
IEEE International Conference on Smart Grid Commu-
nications (SmartGridComm). IEEE. 2017, pp. 381–386.
[8] Pooja Singh et al. “Voice control device using
raspberrypi”. In: 2019 Amity International Conference
on Artifi- cial Intelligence (AICAI). IEEE. 2019, pp.
723–728.
[9] Binod Vaidya and Hussein T Mouftah. “Smart electric
vehicle charging management for smart cities”. In:
IET Smart Cities 2.1 (2020), pp. 4–13.
[10] Qinglong Wang et al. “Smart charging for electric
vehicles: A survey from the algorithmic perspective”.
In: IEEE Communications Surveys & Tutorials 18.2
(2016), pp. 1500–1517.

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Smart Management of EV Charging Station

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 32 Smart Management of EV Charging Station Paneri Avkirkar Computer Science and Technology Usha Mittal Institute of Technology Aayushi Gajbhiye Computer Science and Technology Usha Mittal Institute of Technology Riddhi Kabra Computer Science and Technology Usha Mittal Institute of Technology Monica Charate Computer Science and Technology Usha Mittal Institute of Technology Ankita Umale Computer Engineering Usha Mittal Institute of Technology --------------------------------------------------------------------------***--------------------------------------------------------------------------- Abstract—In today’s world, Electric Vehicles(EVs) are dras- tically evolving. General public transport as buses, autos, taxis, etc., are rapidly being replaced by EVs, the major cause for this is the rapidly increasing fossil fuel price and the limitedresource available. We observe people switching to EVs but still facing charging issues. The proposed system will work onthis issue by displaying charging stations, providing the userwith a slot at the nearest charging station, guiding them to the destination via GMAPS API, a chatbot for queries and displaying the battery percentage so that they are always aware of the currently available battery. Index Terms—EV; Battery Percentage; GMAPS; Slots. I. INTRODUCTION In recent years, there has been a significant focus on electric vehicles (EVs) as a source to reduce the use of fossil fuels and cutting the extra use of these gases, also saving the ozone layer. EVs utilize rechargeable batteries that can be recharged by plugging into charging stations or electrical outlets. The development of this technology has resulted in a range of EV models, from compact city cars to large trucks. EVs are becoming increasingly popular worldwide, with both automakers and governments advocating for their adoptionas a way to mitigate air pollution and improve public health. In addition to being environmentally friendly, there are many benefits of using EVs such as there is no engine thus the sound is effectively reduced, very light weight so effortlessly used by number of people, also cost of purchase and maintenance is a lot cheaper as compared to conventional vehicles Our proposed system gives an idea on how EVs operates, including their history, technology, benefits, and limitations. Furthermore, this article will examine the current state of the electric vehicle market and the challenges hindering the widespread adoption of electric vehicles. Finally, the document will offer recommendations to policymakers and stakeholders to expedite the transition to electric vehicles, including the launch and marketing of new EV models. Car manufacturers such as Tesla and Tata have recently introduced new electric vehicle models to the market. To reserve one of these vehicles, users are required to pay a portion of the total cost online. Our system will employ the Google Maps slotting strategy and API to generate the quickest route to a charging station. The chatbot system software will use text commands to operate. Specific charging stations are dedicated to charging electric vehicles, although it should be noted that under current conditions, approximately 4,444 cars would require at least 15 to 30 minutes to fully charge. A. Objective The objective of this project is to provide an efficient and convenient charging slot booking system for electric vehicle (EV) car owners. The project aims to design a simple and user- friendly interface that can be easily understood by everyone. Italso aims to connect multiple charging stations together via a single system and provide users with details about the nearest stations and routes to reach them through maps. The overall objective is to simplify the process of booking and charging EVs, making it more accessible to users. II. OBJECTIVE AND SCOPE
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 33 B. Scope The scope of this project is to provide a fast and easy way for customers to book charging slots at EV charging stations. By implementing this system, users will be able to save time and easily find available charging slots at nearby stations. The project will also enable the connection of multiple charging stations through a single system, making it more efficientand cost-effective. Additionally, users will be able to access information about the nearest charging stations and navigateto them using maps. III. REVIEW OF LITERATURE Mohsen Ahmadi; N. Mithulananthan; Rahul Sharma ”A review on topologies for fast charging stations for electricvehicles”. This article [1] presents a topological inventoryof charging stations available in the literature. Currently, 50 kW fast chargers capable of charging an average electric car in about an hour are already on the market. However, a fast charging level of 240 kW capable of recharging a typical electric vehicle in 10 minutes has been introduced into the standard. These high-powered fast chargers should be available soon. When several electric vehicles charge quickly simultaneously, charging stations must provide charging power in the order of several megawatts. Akinwole, OO and Oladimeji, TT ”Design and implementation of arduino microcontroller based automatic lighting control with I2c LCD display”. In this paper [2] we understand how to setup basic arduino system with lcd in order to display the voltage,battery percentage, etc., and also aboutthe different components involved, the resistors used. The paper is also meant to provide socio economic benefits as well. Ferreira, João C. and Monteiro, Vı́tor and Afonso, João Luiz ”Smart Electric Vehicle Charging System”. In this paper [3] the proposed smart electric vehicle charging system connects electric vehicles and renewables to a smart grid (SG) using vehicle-to-grid (V2G) technology. In addition, the system seeks a new paradigm in the power market (EM) through deregulation of power generation and use to obtain the best conditions for commercialization of power. Achmad fitro Research Gate oct 2008 “Shortest Route at Dynamic Location with Node Combination- Dijkstra Algorithm”. This paper [4] describes the modification in the node combination algorithm to find the shortest route. The issue of determining the shortest path from the dynamic positions collected from the fleet is resolved in this paper. Rahul George, Srikumar Vaidyanathan, K Deepa ”EV Charging Station Locator With Slot Booking System”. The paper [5] states the benefit of replacing fuel based vehivles with electric vehicles, the paper also discusses about the excess carbon outlet by fuel based vehicles which can be reduced using electric vehicle. A vehicle to grid system is used in this paper which deals with saving of excess of power stored in the battery and effictively sending it back to the grid in order to avoid the power wastage and reduce the amountof power consumption Heiko Knospe, Scarlet Schwiderski-Grosche “Online Paymentfor Access to Heterogeneous Mobile Networks”. This paper [6] explains the architecture where access to different mobile networks is given based on an online payment systems. Subscribed post-pay customers can use the GSM networks. Using technology, prepay users may also receive services from operators. This paper proposed an advanced design that uses an application for payments. Ange Ouya, Blanca Martinez De Aragon, Cecile Bouette ”An Efficient Electric Vehicle Charging Architecture basedon LoRa Communication” This paper [7] proposed a new communication method between Electrical vehicles and Charging stations. This method manages the energy generatedby solar panels that EVs need. As a result, locally installed panels are major shift in the field of energy. This article aims to improve the generated solar panels energy required forelectric vehicles. Puja Singh Pinki Nayak Arpita Datta Depansha Sani Garima Raghav Rahul Tejal “Voice Control Device using Raspberry Pi”. This paper [8] the voice control device uses Raspberry Pi.It uses Query Processing; with the help of NLP it extracts the required meaningful text from the command given by the user.With the help of text to speech engine, it gives the output to the user in the form of a voice. The limitations of this system are that it requires the Raspberry Pi as a hardware device and we are implementing this algorithm directly on android device. Binod Vaidya1 Hussein T. Mouftah IET “Smart Electric Vehicle Charging Management for Smart Cities”. In this paper [9] they developed an intelligent electric vehicle charging management system, which uses charging
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 34 strategies including an efficient reservation system and allotment of charging station locations. Calculating the overall price including the period of waiting, period of charging, approximated charging cost, and customer dissatisfaction factors in this approach, the planned scheme will provide a better solution. Qinglong Wang, Xue Liu, Jian Du, and Fanxin Kong ”Smart Charging for Electric Vehicles: A Survey From the Algorithmic Perspective”. In this paper [10] a survey is done with the help of algorithmns to gain a particular outcome. We gone through the different various proposed theories in the paper, like how they used them in the paper for the electric vehicle charging system. Later all the related uncertainities and probabilities were discussed in the paper taking all ofthem in consideration. IV. METHODOLOGY In the recent era where global warming and scarcity of fossil fuels are leading to major problems.To solve this problems renewable resources have proved to be boon for man kind. In Japan, the introduction of Feed-in tariffs (FIT) has led to the rapid expansion of photovoltaic systems. However, the increased output power from these system might face repercussions on the basis of frequency and distribution voltage, leading the Japanese government to reconsider theFIT system. To address this problem, a Smart EV Charging Station System is proposed as an aggregator, utilizing a fixed battery for electricity trading. This system provides a platform for booking charging slots at nearest charging stations according to the needs of the customer. Features such as AI chatbots for booking, map integration for direction sensing, notifications, and emails are included. Electric vehicles runs on battery and can be charged used on the basis of battery requirements and their socket type, time for charging. The basics and features required for EV chargers are also discussed, there is also huge requirement of EV charging connection. The proposed Smart EV Charging Station System includes a slot booking system for charging EVs, categorized by charging socket type. The system utilizes GMAPS API to show the shortest route to reach the destination. The system uses AI for chatbot assistance and MySQL databases for storing system logs and slot management. Continuous battery monitoring helps to alert the user to chargethe battery at the nearest charging station. An ESP32 micro- controller is used to achieve continuous battery monitoring. The device continuously monitors the battery level every 5 secsand sends battery level data to the system through bluetooth connectivity. The user gets an alert notification when the EV battery goes below the 20%, 10% or as per-user-defined percentage. The device interface with LCD helps the users to view the current battery status while driving. A. Architectural Overview Figure 1 shows the booking system architecture that we have used in the designing of the system. Fig. 1. Booking System Architecture
  • 4. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 35 Figure 2 shows the flow of events in our slot booking system from registration till confirmation. Fig. 2. System Flowchart Figure 3 shows the architecture of the station system Fig. 3. Station System Architecture B. UML Diagrams Figure 4 is the class diagram of our system. Here in this diagram, There are 2 classes. The User and the System. Each class has its attributes and operations. The user registers in registration and logins into the system. He can search the locations and view the results. And the system displays the chatbot and shows the map. Fig. 4. Class Diagram Use case dig of our system is depicted in Figure 5. The use case diagram of our system has two actor that is the user and the admin. The user is directly related to registration, log in, searching charging slot, asking question, using chatbot and receiving notifications and the admin handles the registration, slot booking, etc. activities. Fig. 5. Use Case Diagram
  • 5. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 36 Component diagram of our system is displayed in Figure 6. In the diagram components communicate with each other using interfaces. The interfaces are linked using connectors. In our system we have 6 components namely JDK, Client, MySQL, .jar and .exe that is connected with the main web server. These components interact with each other when required and revert back to the main web server. Fig. 6. Component Diagram Figure 7 shows the deployment of the system. In this dia- gram, a node represents the client’s computer. A component represents the web browser that is linked to the web pages. There’s an interaction between the Clients computer and the web server. Web browsers and web pg depend on the web servers’ HTTP and SSL. And java servlet depends on MySQLas a database server. These 3 nodes i.e. a client computer, web server, and database server are connected with a TCP/IP connection. Fig.7. Deployment Diagram V. RESULT Figure 8 shows the LCD display that is connected with the bateery that displays the current battery percentage of the battery. Fig. 8. LCD Display Figure 9 is the final system that shows the LCD sisplay along with the system sdk present in the mobile. Both the LCD screen and the system displays the battery percentage. The system sdk also have the feature of slot booking, GMAPSAPI to guide you to the nearest charging station.
  • 6. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 37 Fig. 9. LCD Display and Mobile SDK Connectivity Figure 10 displays the Main page of the system from where we can navigate different menus present on the page. Fig. 10. Main Menu Figure 11 shows the about us option that gives the brief description about our company and contact us where the user can contact us. Fig. 11. About us and Contact us Figure 12 displays the user registration menu where the new user can register and move forward to book their slots. Fig. 12. User Registration Page Figure 13 displays the user login page where the already registered customer can log in and move forward to book the slot Fig. 13. User Login Page Figure 14 displays the screen which gives the details of their booking and the GMAP API to book a charging station. Fig. 14. Slot Details
  • 7. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 38 Figure 15 shows the map that direct us to the booked chargingstation. Fig. 15. Map Fig. 17. System login System is developed as a Smart Management of EV Charging Stations with a hybrid approach of android application devel- opment. The system also contains a LCD display indicating the battery percentage which is also reflected in the application. This system also contains the AI chatbot for query solving as well as GMAPS API for direction sensing. This project can be transformed into a proper android/ios application or else can be installed in the electric vehicles according to different battery and expand it to a large scale project. There will also be a system login menu which can only be accessed by the admin from where the admin can view the slots, add more slots and add or delete more slots Figure 16,17shows the admin panel from where admin can add charging slot and see the slot details Fig. 16. Adding slot VI. CONCLUSION VII. FUTURE WORK REFERENCES [1] Mohsen Ahmadi, N Mithulananthan, and Rahul Sharma. “A review on topologies for fast charging stations for electric vehicles”. In: 2016 IEEE International Con- ference on Power System Technology (POWERCON). IEEE. 2016, pp. 1–6. [2] OO Akinwole and TT Oladimeji. “Design and imple- mentation of arduino microcontroller based automatic lighting control with I2c LCD display”. In: J Electr Electron Syst 7.258 (2018), pp. 2332–0796. [3] João C. Ferreira, Vı́tor Monteiro, and João Luiz Afonso. “Vehicle-to-Anything Application (V2Anything App) for Electric Vehicles”. In: IEEE Transactions on In- dustrial Informatics 10.3 (2014), pp. 1927–1937. DOI: 10.1109/TII.2013.2291321. [4] Achmad Fitro, Suryono Suryono, and Retno Kusuman- ingrum. “Shortest Route at Dynamic Location with Node Combination-Dijkstra Algorithm”. In: (2018). [5] Rahul George, Srikumar Vaidyanathan, and K Deepa. “Ev charging station locator with slot booking sys- tem”. In: 2019 2nd International Conference on Power and Embedded Drive Control (ICPEDC). IEEE. 2019, pp. 342–348. [6] Heiko Knospe and Scarlet Schwiderski-Grosche. “On- line payment for access to heterogeneous mobile net- works”. In: IST Mobile & Wireless Telecommunications Summit. 2002, pp. 748–752.
  • 8. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 10 Issue: 04 | Apr 2023 www.irjet.net p-ISSN: 2395-0072 © 2023, IRJET | Impact Factor value: 8.226 | ISO 9001:2008 Certified Journal | Page 39 [7] Ange Ouya et al. “An efficient electric vehicle charging architecture based on LoRa communication”. In: 2017 IEEE International Conference on Smart Grid Commu- nications (SmartGridComm). IEEE. 2017, pp. 381–386. [8] Pooja Singh et al. “Voice control device using raspberrypi”. In: 2019 Amity International Conference on Artifi- cial Intelligence (AICAI). IEEE. 2019, pp. 723–728. [9] Binod Vaidya and Hussein T Mouftah. “Smart electric vehicle charging management for smart cities”. In: IET Smart Cities 2.1 (2020), pp. 4–13. [10] Qinglong Wang et al. “Smart charging for electric vehicles: A survey from the algorithmic perspective”. In: IEEE Communications Surveys & Tutorials 18.2 (2016), pp. 1500–1517.