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HYBRID BEHAVIORS ANALYSIS OF PHOTOVOLTAIC ARRAY PERFORMANCE

机译:光伏阵列性能的混合行为分析

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摘要

Photovoltaic cells would operate as a load when local solar irradiation declines in series connection, which would result in damage easily. Nowadays modules are often configured with bypass diodes to provide energy releasing route. Furthermore, blocking diode is connected in series before parallel connection in order to prevent inverse power injection. Based on such configurations, this paper was mainly devoted to present a simplified method for characterizing hybrid photovoltaic performance. Newton-Raphson method was adopted for numerical simulations. It was proven to be suitable and effective in model validation coinciding with manufacturer specification. Furthermore, MPP peak positions were reviewed roundly via simulations of the total characteristic curves, especially the operation mismatches caused by random shadows. Different abilities under diverse series/parallel patterns were also investigated for comparison. Researches indicate that: firstly, traditional monotone algorithms of MPPT could be invalid for detecting false maximum only; secondly, the "doorsill effect" of local irradiation intensities, namely that global power output might not be influenced by changes of local shadows; finally, suggestions are put forward that parallel connection should be ranked prior consideration with whole array design, to boost power output relatively.
机译:当局部太阳能照射串联连接下降时,光伏电池将作为负载运行,这将易于损坏。如今模块通常配置旁路二极管以提供能量释放路线。此外,阻塞二极管在并联连接之前串联连接,以防止逆功率注入。基于这种配置,本文主要致力于提出一种简化的方法,用于表征混合光伏性能。用于数值模拟采用牛顿-Raphson方法。被证明是适合和有效的模型验证与制造商规范重合。此外,通过总特征曲线的模拟仔细地审查MPP峰位置,尤其是由随机阴影引起的操作不匹配。还研究了不同系列/平行模式下的不同能力进行比较。研究表明:首先,MPPT的传统单调算法可能是无效的,用于检测错误最大值;其次,“局部照射强度的”流动效应“,即全球电力输出可能不会受到局部阴影变化的影响;最后,提出了并行连接应该以整个阵列设计进行排名,以提高电源输出。

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