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Module-Integrated Converter Based on Cascaded Quasi-Z-Source Inverter With Differential Power Processing Capability for Photovoltaic Panels Under Partial Shading

机译:基于级联准Z源逆变器的具有部分功率处理能力的模块集成转换器,用于部分遮光的光伏面板

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Conventional microinverter or module-integrated converter (MIC)-based photovoltaic (PV) systems are prone to be complex and costly because each MIC requires not only a boost converter to bridge a huge voltage gap between a PV panel and grid but also desirably a differential power processing (DPP) converter to preclude partial shading issues. This paper proposes a novel MIC based on cascaded quasi-Z-source inverters (q7S1s) with DPP capability. A traditional qZSI and voltage multiplier (VM)-based DPP converter are integrated into a single unit with sharing active switches and magnetic components, achieving system- and circuitlevel simplifications. In addition, a novel control strategy utilizing two control freedoms of shoot-through duty cycle d(st) and modulation index M to simultaneously perform maximum power point tracking (MPPT) and DPP function, respectively, is also presented. A 150 W prototype for a standard PV panel consisting of three substrings is built, and experimental tests are performed emulating partial shading conditions. The results demonstrate that the proposed integrated qZSI could perform MPPT with satisfactory preventing partial shading issues while generating ac voltage at the inverter output.
机译:常规的基于微逆变器或模块集成转换器(MIC)的光伏(PV)系统容易变得复杂且成本高昂,因为每个MIC不仅需要升压转换器来桥接PV面板和电网之间的巨大电压间隙,而且还希望有一个差分功率处理(DPP)转换器可消除部分阴影问题。本文提出了一种具有DPP功能的基于级联准Z源逆变器(q7S1s)的新型MIC。传统的基于qZSI和电压倍增器(VM)的DPP转换器被集成到一个单元中,并共享有源开关和磁性元件,从而简化了系统级和电路级。另外,还提出了一种新颖的控制策略,该策略利用直通占空比d(st)和调制指数M的两个控制自由度分别同时执行最大功率点跟踪(MPPT)和DPP功能。构建了由三个子串组成的标准PV面板的150 W原型,并进行了模拟部分遮光条件的实验测试。结果表明,所提出的集成qZSI可以在防止逆变器输出产生交流电压的同时,令人满意地防止部分遮蔽问题的情况下执行MPPT。

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