1、Faculty of EngineeringSchool of Photovoltaic and Renewable Energy EngineeringBeyond the Standard:What Your Module Qualification Isnt Telling YouBram HoexPV ModuleTech USA,Napa Valley,USA,16-17 June 2026School of Photovoltaic and Renewable Energy Engineering,UNSW Sydney,Kensington,2052,AustraliaSchoo
2、l of Photovoltaic&Renewable Energy EngineeringWorld-Leading PV ResearchTranslated into Real Solutions50+Years of PVresearch excellencePERC&TOPConInvented at UNSWWorldRecordsSolar cellefficiencies200+Researchers&400+studentsStrong commercialisation track recordSpin-offs,licensed IP,and industry partn
3、erships delivering real-world impactC O M M E R C I A L S P I N-O F F S U N S W H O E X G R O U PEnergy Yield&Degradation ModellingHighest-precision energy yield modelling for utility-scale solar advanced degradation analytics to maximise plant lifetime&returns.DevelopersAsset OwnersModule MfrsAI So
4、lar Operations PlatformAI brain and robotic hands that make solar farms self-operating,efficient,and effortless.LIVE:18 utility-scale solar farms across MENA now liveStressFactorsDrivers of lossOccurrence/ExamplesLeads toDegradation ofpackaging materials Glass breakage Dielectric breakdown Bypass di
5、ode failure Encapsulant(discoloration,elasticity)Backsheet cracking/delamination Performance failure Safety hazard(electric shock)Ground faults/current leakage Electrochemical corrosionLoss of adhesion Delamination:Glass-to-encapsulant Cell-to-encapsulant Encapsulant-to-backsheet Optical decoupling(
6、reduced light transmission)Inefficient heat dissipation Reverse-bias cell heating Higher operating temperatures Hot spot formationDegradation ofcell/module interconnects Change in joint geometry Thermomechanical fatigue Solder bond failure Broken interconnect Increased series resistance Increased he