Power Quality is a concept of powering & grounding electronic
equipment in a manner which is suitable to its operation &
compatible with premise wiring system & other connected
equipment.
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Power quality analysis (2)
1. Power Quality Analysis
Power Quality is a concept of powering & grounding electronic
equipment in a manner which is suitable to its operation &
compatible with premise wiring system & other connected
equipment.
We at Network Techlab conduct PQA to our customer which involve a visual inspection
of the site understudy installation of power analyzers at various locations to monitor power
parameters, collect data interpret the same.
Also as the performance of the critical equipment depends on other non-electrical
parameters, magnetic field strength & static charges are also measured.
Power Analysis Objectives -
Protection from dangerous of power outrages or power swings.
Prevention of any kind of losses or interruptions in business.
To suggest & recommend necessary modifications, repairs, addition to the system.
To Provide a large data base of recorded disturbance to identify the types of power
deviations that exists which can effect the performance & safety of linear & non linear load.
What is Power Quality?
Equipment - Fluke 435 Power Quality Analyzers
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2. Groundling of critical ITEs
Panel ground current test
Grounding of metallic equipment
Studying transfer logic arrangement
Studying backup plane in the event of source failure
Transfer load to DG set
Corrections based on collected data, breaker sizing & cable sizing
Identify whether the operations can be foolproof
Studying potential area of sabotage
Detailing of electrical distribution
Current running load capacity
Maintenance feasibility
Routing of cables
Separations of power & communication / data cable
The Process -
2. Safety Assessment
3. Redundancy Assessment
4. Threat / Risk Analysis
1. Walk Through Assessment
Power Analysis Process-
Our Power Analysis process includes variety of analysis, assessment & reporting
namely
Walk through assessment
Safety assessment
Redundancy assessment
Threat & risk analysis
Monitoring power parameters
Harmonics assessment
Detail report
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3. Measure VTHD & ITHD at main source & emergency source
Measure VTHD & ITHD at ups system input & output
6. Harmonic Assessment
Includes corrective action as per international standard & guidelines
Include steps for improvement as per international standard & guidelines
Detailed Analysis of power parameters
1. IEEE 1100 - 2005 IEEE recommended practice for powering & grounding
electronic equipments
2. IEEE 142 - 1991 IEEE recommended practice for grounding & industrial
& commercial power system
3. IEEE 519 - 1992 IEEE recommended practice & requirements for harmonic
control in electrical power system
4. IEEE C62.41 recommended practice for installing TVSS to protect sensitive
electronic equipment
7. Detailed Report
Standards For Evaluation
We provide summarized report of analysis findings along with adverse
impacts & further give you the recommendation in line with IEEE guidelines
bes on the power quality analysis report
Measure various power characteristics & disturbance at main source, emergency source
Phase voltage imbalance
Voltage regulation
Transients
Normal & common mode noise
Load current nature, variation & imbalance
Frequency regulation
Power factor
Active reactive & apparent power
5. Power Parameters
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4. Thermal Image Normal Image
Thermography
Temperature is the physical property that quantitatively expresses the common notations of hot & cold. Every
object emits energy in electromagnetic spectrum. The wavelength of the energy differs depend on materials. As
shown below; if the wavelength is in the range between 400 nm to 720 nm i.e. visible range, then the body would
be visible. If the energy emitted is having wavelength beyond 720 nm, then it would be invisible. This infrared
energy can be captured using Thermal Imager.
Thermography is the non-contact analysis & mapping of thermal patterns of an object. It’s known that all objects
emit infrared radiation based on their temperature. Thermal imagers detect this infrared radiation & according to
the black body radiation law, thermography makes it possible to see one’s environment with OR without visible
illumination. As such Thermography is used to monitor & analyze the performance of electrical equipments & if
done properly can help prevent fire hazards/failures.
Difference between Normal & Thermal Images
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5. Benefits
1. Prevent fire hazards
2. Reduce equipment down time
3. Maintenance economics reduction
4. Business interruption minimization
1. Reduce the magnitude of frequency of power variations
2. Add power conditioning to nullify power quality problems
3. Savings in energy bill due to reduced losses
4. Improve safety system efficiency & uptime
5. Reduce equipment downtime & maintenance expanse
Advantages of Power Quality Analysis -
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6. NETWORK TECHLAB (I) PVT. LTD.
Mumbai HO. : 41, Sarvoday Industrial Estate, Near Paper Box, Off Mahakali Road, Andheri (East),
Mumbai-400093.
Vadodara Branch : F - 10 Aakar Complex, Samta Char Rasta, Subhanpura, Vadodara.
Thank you
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Vapi Branch : 304, Skylon Tower, Char Rasta, Vapi Silvassa Road, Vapi (E) - 396191.
Pune Branch : 49/2B/3,Vaibhav,Maharastra C.H.S,Opp Big Bazar ,Pune Satara Road ,Parvati,Pune - 411009.
Ahmedabad Branch : 11&12 Madhupuri Raw house & Tenament,Radio Mirchi road,Opp.
KalaResidency ,Vejalpur,Ahmedabad-380051