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A novel Competence Square based PV array reconfiguration technique for solar PV maximum power extraction

机译:一种基于能力广场的新型光伏阵列重构技术,用于太阳能光伏最大功率提取

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摘要

The ever growing interest on solar energy has augmented large solar power parks in the contemporary time. Even though the most commonly used Total Cross Tie (TCT) interconnection scheme minimizes mismatch losses, shade occurrence in large PV arrays drastically reduces the power output and invokes multiple power peaks in the P-V characteristics. To counteract the multiple peak issue, PV arrays are reconfigured either via electrical or physical reconfiguration techniques. In this regard, physical relocation methods are proven to be efficient and economical in achieving better shade dispersion since, it neither demands complex switching arrangements or high end controllers for reconfiguration. Therefore, this paper introduces an innovative Competence Square (CS) technique for physical rearrangement of PV panels in a TCT interconnection scheme. The method devised is a one-time relocation technique that follows a unique number pattern for relocating the PV panels. Moreover, various test results elucidate the effectiveness of the CS technique in effectively dispersing the shade over the entire PV array. For validation, four typical shade cases are considered and the results are comprehensively compared with the recently proved TCT and Dominance Square (DS) techniques. In addition, the proposed method is computationally easy and is adaptable for PV arrays of any size. Overall, CS technique has showed its eminence in obtaining smoother output characteristics, better fill factor, power enhancement and increased energy savings.
机译:对太阳能的日益增长的兴趣在当代增加了大型太阳能公园。即使最常用的全交叉领带(TCT)互连方案最大程度地减少了失配损耗,但大型PV阵列中的阴影发生会大大降低功率输出,并在P-V特性中产生多个功率峰值。为了解决多峰问题,可通过电气或物理重新配置技术重新配置PV阵列。在这方面,事实证明,物理重定位方法在实现更好的色散方面是有效且经济的,因为它既不需要复杂的开关装置也不需要用于重新配置的高端控制器。因此,本文介绍了一种创新的能力广场(CS)技术,用于在TCT互连方案中对光伏电池板进行物理重新布置。设计的方法是一种一次性重定位技术,该技术遵循唯一的数字模式来重定位PV面板。此外,各种测试结果阐明了CS技术在将阴影有效分散到整个PV阵列上的有效性。为了进行验证,考虑了四种典型的阴影情况,并将结果与​​最近证明的TCT和Dominance Square(DS)技术进行了全面比较。另外,所提出的方法在计算上是容易的,并且适用于任何尺寸的PV阵列。总体而言,CS技术在获得更平滑的输出特性,更好的填充因子,功率增强和增加的节能方面已显示出其卓越的地位。

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