首页> 外文会议>European Photovoltaic Solar Energy Conference and Exhibition >ADVANCES IN THE DEVELOPMENT OF A NOVEL MODULE CONCEPT BASED ON CONDUCTIVE STRUCTURES IN THE ENCAPSULATION MATERIAL FOR CONTACTING HIGHLY EFFICIENT N-TYPE BACK-CONTACT SOLAR CELLS
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ADVANCES IN THE DEVELOPMENT OF A NOVEL MODULE CONCEPT BASED ON CONDUCTIVE STRUCTURES IN THE ENCAPSULATION MATERIAL FOR CONTACTING HIGHLY EFFICIENT N-TYPE BACK-CONTACT SOLAR CELLS

机译:基于封装材料中的导电结构开发新型模块概念的研究进展,用于接触高效的N型背面太阳能电池

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The new functional encapsulation layer which is presented in this study, known as conduction path on encapsulant (CPOE), has the potential to interconnect high efficiency IBC solar cells. In our study, single cell demonstrator modules were assembled reaching an efficiency of 19.3% with relative cell to module (CTM) losses below 2%. However, this concept so far requires reduction in the cell area (e.g. one-eighth cell size module design) since significant losses in FF were observed due to the high resistive losses in the CPOE. Accelerated environmental indoor tests reveal that the module based on CPOE technology passes the precondition ultra-violet (UV) degradation and damp heat (DH) exposure test for 1250 hrs. without any signs of degradation in the module packaging materials or electrically power losses. However, thermo-cycling for 200 cycles reveal relative Pmpp losses higher than 5%. Additionally, power degradation after applying a PID test at +1000V at 85°C was observed. Finally, outdoor energy yield studies of the CPOE modules compared with Zebra and p-type cell modules with soldered ribbons as references reveal higher energy yield (Ya) and performance ratio (PR) of CPOE and Zebra reference than p-type full cell module. In addition during cloudy days, CPOE modules show better energy performance when compared to Zebra reference modules.
机译:本研究中介绍的新功能封装层,称为密封剂(CPOE)的传导路径,具有互连高效IBC太阳能电池的电位。在我们的研究中,单细胞演示器模块组装达到19.3%的效率,相对细胞与模块(CTM)损失低于2%。然而,这一概念到目前为止需要减少细胞区域(例如一八个细胞尺寸模块设计),因为由于CPOE中的高电阻损耗,观察到FF的显着损失。加速环境室内测试表明,基于CPOE技术的模块通过了1250小时的前提紫外(UV)劣化和湿热(DH)曝光测试。没有模块包装材料或电力损耗的任何劣化迹象。然而,200次循环的热循环揭示了高于5%的相对PMPP损失。另外,观察到在85℃下施加PID试验后的功率劣化。最后,与Zebra和P型电池模块相比,与焊接带的户外能源产量研究作为参考文献揭示了比P型全电池模块的CPOE和斑马参考的更高的能量产量(YA)和性能比(PR)。除了在阴天期间,与斑马参考模块相比,CPOE模块显示出更好的能量性能。

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