Potential Induced Degradation Performance Monitoring Performance Monitoringof Solar Power Plants.

Slides:



Advertisements
Similar presentations
Q-Cells Yield Security Three times safe – for higher yields.
Advertisements

Solar Energy Overview Overview of the technology, benefits, as well as technical and financial project considerations for photovoltaic systems. Prepared.
Commissioning, Maintenance, and Troubleshooting
Solar PV system - financial assistance and incentives
Solar Power - An Emerging Technology by R N Kumar (GM, HOD Protection and Testing) S Naved Masood (Executive, Protection and Testing)
Leading Renewable Energy Development Company in the World Overview and Case Study on 500KWp Solar power plant at DMRC Sector 21 Dwarka Station by SunEdison.
Solar Power Presented By G2Power Technologies Saint Louis, MO.
SOLAR POWER A SUSTAINABLE ENERGY SOURCE DMRC’s INTITATIVES Delhi Metro Rail Corporation.
© 2011 Underwriters Laboratories Inc. Quality and Reliability of PV Power Plants Peeyush Gupta Director – Sales & Marketing UL India Pvt Ltd.
CBA FINAL PROJECT 2002 Gyorgyi Cicas ; Jose L. Aguirre; Po-Hsin Lin CBA OF OPERATING PHOTOVOLTAIC SYSTEM IN PITTSBURGH.
EE580 – Solar Cells Todd J. Kaiser
2-4. Solar Panels.
Lesson 25: Solar Panels and Economics of Solar Power
THE PROCESS OF DESIGNING A PV SYSTEM
PHOTOVOLTAIC ARRAY SYSTEMS - AUSTRALIA -. 1.The raw materials are — silicon dioxide of either quartzite gravel or crushed quartz - placed into an electric.
Welcome and Introductions CoServ Presentation & Member Input.
PowerPoint ® Presentation Chapter 3 Site Surveys and Preplanning Preliminary Assessment Safety Site Surveys Preparing Proposals Installation Planning.
Internal Resistance of a Source Definition: The resistance within a battery, or other voltage source, that causes a drop in the source voltage when there.
Introduction Vikram Group: Founded in 1974 A diversified company with interests in Engineering, Machinery Manufacturing, Textiles, and Solar Energy Purchasing,
© Philadelphia Scientific 2004 A Case Study: Four Years of Performance Data at a Canadian Rehydration and Catalyst Addition Site Harold A. Vanasse – Philadelphia.
Sustainable Energy Systems Engineering Peter Gevorkian Ch 2: Solar Power Generation Design Brevard Community College EST1830 Bruce Hesher.
SUSTAINABLE ENERGY REGULATION AND POLICY-MAKING FOR AFRICA Module 13 Energy Efficiency Module 13: SUPPLY-SIDE MANAGEMENT.
Lamma Power Station Solar Power System. 2 Content Project Background Site Selection Amorphous Silicon Thin Film Photovoltaic System Environmental Benefits.
Slayton Solar Project RDF Grant Award EP3-10 Presentation of the Project Results to the RDF Advisory Board January 8, Project funding provided by.
PV-DIESEL POWERED TRAINS
Designing Solar PV Systems (Rooftops ). Module 1 : Solar Technology Basics Module 2: Solar Photo Voltaic Module Technologies Module 3: Designing Solar.
Solar Project Performance Assessment
SOLAR POWER SYSTEM FEASIBILITY STUDY,AND REPORT FOR A MUSEUM Presented by Abiola Adeseko Hamid Mohseni Sandeep Tripuraneni Charan Reddy.
Solar Rooftop. The HERO GROUP - OVERVIEW The HERO GROUP - OVERVIEW  Top 10 widely recognized brand in India  Members among the leaders in business:
Solar System Life Maintenance Call in number: Meeting number: * * August 3, 2009.
Solar-Powered Fuel Stations
PowerLight Confidential 1 SunPower / PowerLight Commercial Monitoring Services.
Nuclear Fissionary, April 2, 2010 Why are prices declining?  Generally, solar panels make up about 50% of the cost of a system (40% for thin film),
Green Initiative on Rail Coaches – A case study of Northern Railway.
© ABB PP&PS FES Italia October 20, 2015 | Slide 1 Advanced solutions for solar plants Sergio Asenjo, Head of Solar Center of Competence, June 10th 2010.
Diagnostics of photovoltaic power plants operation
Solar Energy Technology Science Summer Camp Session 9: Fri 9:00 AM - 12:00 N : Field trip to Energy Masters and Installing/Commissioning the System.
Electricity is one of the major input for the operation of Metro Rail. The electricity demand of Delhi Metro is 150 MW Monthly expenditure on electricity.
Power Electronics Needs and Performance Analysis for Achieving Grid Parity Solar Energy Costs T. Esram, P. T. Krein, P. L. Chapman Grainger Center for.
SOLAR ROOF-TOP is A necessity for DELHI METRO DR. MANGU SINGH Managing Director, DMRC.
Photovoltaic Systems – Residential Scale Part 2 April 2, 2014.
A COMPARISON OF DIFFERENT SOLAR RADIANCE SENSORS FOR PV APPLICATIONS Mavromatakis F., Franghiadakis Y., Chalampalakis G. and Vignola F. TEI of Crete &University.
Designing Solar PV Systems ( Utility Scale). Module 1 : Solar Technology Basics Module 2: Solar Photo Voltaic Module Technologies Module 3: Designing.
Advanced solutions for solar plants Milan Infracon, Head of Solar Center of Competence, June 10th 2012 © MIPL SOLAR PLANT December 14, 2015 | Slide  Sergio.
Session 17 Grid Tied PV Systems – Part 6 Three-Phase Systems Siting and Mechanical Considerations October 29, 2015.
Solar energy at Uniworld Gardens 400kW to provide back up power
Electricity pricing Tariffs.
Diagnostics of photovoltaic power plants operation Vitezslav Benda, CTU Prague, Faculty of Electrical Engineering.
PV System Design and Installation LO 10 Performance Analysis and Troubleshooting.
PV System Design and Installation LO 5B - Solar Energy Fundamentals.
درس تبدیل مستقیم انرژی I L : Light current I D : Diode current I SH : Shunt current k: Boltzmann constant N S : number of cells in series.
Analysis of “Hybrid” Renewable Energy Technology “SolarMill ® ” versus “Solar‐Only” I recently spoke with Dan Bates, CEO of Windstream Technologies,about.
Is solar power part of the energy solution in the UK?
Assessment and Design of Rooftop Solar PV system
Power Generation and Distribution
Hartek Group is one of India’s fastest growing company with offerings that span across Engineering, Renewables, Technology , Construction , Fuel and Manufacturing.
Why Need of Solar Power & Other Renewable Energy Sources.
Solar Power Design and Solutions
Economic Operation of Power Systems
SOLAR POWER A SUSTAINABLE ENERGY SOURCE DMRC’s INTITATIVES
How to Design and Implement a Reliable PV System which could last 30+ years ZAKI IQBAL SENIOR R&D ENGINEER RAK RESEARCH AND INNOVATION CENTER.
PV System Quality and Performance
Summary of Tools to Analyse Solar Financing of Solar Power
Renewable Energy In Egypt
Prof. Sukumar Mishra Indian Institute of Technology Delhi
Solar PV Power Plant Design Considerations
Sr. Lecturer in Electrical Engg. Govt. Polytechnic,Manesar
Harnessing Renewable Energy Solar Mission of Indian Railways
“DESIGN OF GRID-CONNECTED PV SYSTEM”
Presentation transcript:

Potential Induced Degradation Performance Monitoring Performance Monitoringof Solar Power Plants.

2 OVERVIEW OF SOLAR PROJECTS IN DMRCPERFORMANCE MONITORING OF PLANTSBRIEF ON PIDPROPOSED SOLUTIONSCONCLUSION CONTENTS

OVERVIEW OF SOLAR PROJECTS IN DMRC

In an effort to reduce carbon footprints, DMRC decided to use all roof tops to instal solar panels for renewable energy. As a first step, DPRs were prepared to assess solar potential by surveying stations & depots. Solar Power Projects in DMRC 27 th June 2014, first roof top solar plant of 500kWp capacity commissioned (in association with SECI). It was on RESCO Model – In which investment was by Developer and only roof space was given by DMRC.

DMRC sites have following 3 different type of roof tops :- –Flat roof –Inclined Roof –Curved Roof Types of Roofs

500 kWp - DWARKA 21 Station (13 o Delta Rack)

115 kWp - ANAND VIHAR Station (3 Tier Module, 24 o Angle, with Foundation Blocks)

85 kWp - Pragati Maidan Station (2 Tier Module, 24 o Angle, with Foundation Blocks)

50 kWp - METRO ENCLAVE (with Net Metering)

Solar Panels on Inclined Sheds Inclined Roof

Curved Roof

Present Status  Total assessed Potential:- 50 MWp.  Rs Crores Central Financial Assistance for 20 MWp Solar Plants approved by MNRE.  PPA signed for 11.0 MWp with Pooled Levelised Tariff of Rs / kWh under RESCO Model.  2.8 MWp capacity is already commissioned.

Learnings and Challenges faced  In Using Curved Roof sheds, Design clamps / structures for Delhi Wind Load, (till now only one reputed supplier for clamps in India) Special Provisions for Sheds. (Ladder, Life Line, etc.)  Existing sheds not Designed / oriented for Solar Panels, (Ventilation Dome, etc.)  Getting Power Block in Operational areas,  Developers lack experience with Metro / Rail,  Assimilation of Technology Upgrades in PPA.  Premature reduction in Power Output

Provisions in PPA  In PPA, Estimated generation is specified based on minimum Capacity Utilization factor CUF of 15% per annum.  Degradation not to exceed 20% in 25 years.  Release of 15% subsidy is linked to Performance of plant:- 10% on Commissioning of plant (with minimum 75% PR) 2.5% after 1 st year of operation (with min. CUF > 15%) 2.5% after 2 nd year of operation (with min. CUF > 15%)

PERFORMANCE MONITORING OF PLANTS

Important Terms regarding performance Performance Ratio Capacity Utilization Factor Specific Energy

Performance Ratio “Performance Ratio” (PR) is ratio of “Energy Measured” to “Energy Modelled”. PR = (Measured Energy output in kWhr) (Irradiance in kW/m 2 ) X (Active Area of Panel in m 2 ) X (Module Efficiency). Range :- 70 – 80 %. To qualify for release of Subsidy, PR should be minimum 75% at the time of commissioning.

Capacity Utilization Factor Ratio of annual output of the plant in kWh to installed plant capacity for number of days. CUF = Annual Energy Output (in kWh) (Plant installed capacity in kWp) X 365 X 24 In tenders, minimum CUF specified is 15%.

Specific Energy Specific energy is energy (kWh) generated per one kWp per day. Specific Energy = Energy generated (Capacity installed * Time Period ) For our plants, on an average it is 4 Units / kWp per day.

Tabular Comparison of Info on Web

Required Improvements Performance Ratio (for whole plant as well as individual inverters on daily basis and on date selection basis) Plot of Power generated Vs Irradiance Specific energy (kWh / kWp / Day) (for each inverter and whole plant.) Inverter Efficiency Plot (A.C. Power generated Vs DC power Available)

On closely monitoring, in Performance of One of the Plant PREMATURE DEGRADATION of Power Output was noticed.

On closely monitoring the Performance of the Solar installation PREMATURE DEGRADATION was Observed. Root Cause Analysis by Developer

Details of Analysis String type Inverter : (21.6 KW); All inverters working at optimum output level – checked DC v/s AC power No inverter found underperforming – Compared DC current data distribution Interim maintenance carried out Pass Module (300 Wp) No physical damage observed No visual defect (discoloration etc.) seen IV curve test, to check degradation, is planned – could not done due to unfavorable weather at site. Partially Pass Pyranometer: CMP – 11 Installed at Plane Of Array (POA) No visual defect / damage observed The instrument is cleaned Calibration is NOT DUE yet Pass Environment – Shadow, Soiling No shadow on structure / module/s Soiling – Soiling is more being in open area and vicinity to Airport Fail 25

Around 32 Solar modules were taken from site for testing at the factory. After testing, degradation was attributed to POTENTIAL INDUCED DEGRADATION (PID).

BRIEF ON POTENTIAL INDUCED DEGRADATION (PID)

What is PID ? PID is Potential Induced Degradation, a phenomenon which affects some PV modules with crystalline Si cells and leads to Power loss in a module, by electrically modifying solar cell resulting in leakage current. Deterioration in performance, may be 30% or more in few months / years. POTENTIAL CAUSES:- (a) HIGH TEMP. (b) HIGH HUMIDITY (c) HIGH VOLTAGE Screening for PID at present is not addressed in IEC

How PID works ? A positive charge is built up on the anti-reflective coating at the surface of the cells & the result is a temporary short circuit in the affected cells This leads to a decrease in cell voltage and a drop in efficiency – an effect that is reinforced by high temperatures & humidity

PID Testing As per IEC under drafting, the PID testing involves a test run of 100 hours with Voltage applied to Test panel’s corresponding to maximum system voltage (as per panel datasheet) and exposed to environment with temperature and humidity of 60°C (± 2°C) and 85% (± 5%) respectively in a chamber. PID testing procedures, in many labs involves comparison of visual inspection, I-V measurement and EL testing prior to and after the actual PID testing. After the test, Module must not show any major defects and should not have power loss more than 5%.

V-I Curve of the Module

Comparison of EL images of Modules

Impact of Potential Induced Degradation 1.Risk in achieving 25 years warranty life, 2.Gets worse with high temperature & high humidity 3.At early stage, PID is reversible by reverse voltage bias. 4.If allowed to progress, degradation becomes irreversible.

Since, environmental factors can not be controlled. The Three level strategy with important factors is :-  Cell level – Anti reflective coating (ARC).  Panel level – Encapsulation Material,  System level – Negative Grounding or PV Offset Box. (Grounding is possible in Central Inverters and not in String Inverters, normally used for small capacity Plants) In all new plants of DMRC PV offset boxes are used. Challenges and solutions for PID

Action Plan to Reverse PID at site

CONCLUSION

Performance parameters must be standardised to compare different Plants of developers on equal footing. Potential Induced Degradation can seriously impact the Pay-back of the plants. While, entire PV system interacts to cause PID, the failure occurs in the modules. While environmental factors are hard to control, the best solution is to minimize or eliminate PID by making design changes at the system, module and / or cell levels.CONCLUSION

Many module manufacturers have taken steps to produce PID resistant modules, which currently are nearly 4 to 5% costlier than Normal module. Early finalisation of IEC for testing the modules, is likely to help in proper certifications of “PID-resistant” modules. Design of Solar Plant with string based Inverters must analyse grounding requirements carefully and include PV Offset Box. CONCLUSION (Contd...)

THANK YOU