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Review of mismatch mitigation techniques for PV modules

机译:审查光伏组件的失配缓解技术

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摘要

The installation of photovoltaic (PV) systems is continuously increasing in both standalone and grid-connected applications. The energy conversion from solar PV modules is not very efficient, but it is clean and green, which makes it valuable. The energy output from the PV modules is highly affected by the operating conditions. Varying operating conditions may lead to faults in PV modules, e.g. the mismatch faults, which may occur due to shadows over the modules. Consequently, the entire PV system performance in terms of energy production and lifetime is degraded. To address this issue, mismatch mitigation techniques have been developed in the literature. In this context, this study provides a review of the state-of-the-art mismatch mitigation techniques, and operational principles of both passive and active techniques are briefed for better understanding. A comparison is presented among all the techniques in terms of component count, complexity, efficiency, cost, control, functional reliability, and appearance of local maximums. Selected techniques are also benchmarked through simulations. This review serves as a guide to select suitable techniques according to the corresponding requirements and applications. More importantly, it is expected to spark new ideas to develop advanced mismatch mitigation techniques.
机译:在独立和并网应用中,光伏(PV)系统的安装在不断增加。太阳能光伏组件的能量转换效率不是很高,但是它是清洁绿色的,因此非常有价值。光伏模块的能量输出在很大程度上受到运行条件的影响。运行条件变化可能会导致PV模块发生故障,例如失配故障,可能是由于模块上的阴影所致。因此,就能量产生和寿命而言,整个PV系统的性能下降。为了解决这个问题,文献中已经开发了缓解失配的技术。在这种情况下,本研究对最新的失配缓解技术进行了回顾,并简要介绍了被动和主动技术的操作原理,以更好地理解。在组件数量,复杂性,效率,成本,控制,功能可靠性和局部最大值出现方面,对所有技术进行了比较。所选技术也通过模拟进行基准测试。该评论可作为根据相应要求和应用选择合适技术的指南。更重要的是,有望激发出新的想法来开发先进的失配缓解技术。

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