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Operation of dual-input central capacitor photovoltaic inverter under unbalanced grid voltage condition

机译:不平衡电网电压下双输入中心电容光伏逆变器的操作

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To date, a family of series-connected boost converter (SCBC) with enhanced efficiency has been presented as the front-end dc/dc stage of distributed photovoltaic (PV) inverter, which suffers the severe PV voltage/power oscillation when operated under unbalanced grid voltage condition. This paper proposes an operational scheme to enhance the performance of one type SCBC, namely the dual-input central capacitor (DICC) converter, under unbalanced grid voltage condition. The PV voltage/power oscillation is eliminated using the propose scheme, resulting in the maximum PV energy harvest and enhanced grid current quality even under severe unbalanced condition. Also the overall dc-link voltage oscillation amplitude is minimized. The analytical representation of double line-frequency current along with the DICC circuitry model are studied, so that the DICC circuitry parameters could be designed accordingly. This paper further proposes the control strategy of DICC-PV inverter under unbalanced grid voltage condition. All the theoretical findings and the control method proposed can be derived to other type SCBCs. Finally, the theoretical findings were verified through both Matlab simulation and an experimental prototype.
机译:迄今为止,具有增强效率的串联连接升压转换器(SCBC)是分布式光伏(PV)逆变器的前端DC / DC级,其在不平衡下操作时遭受严重的PV电压/功率振荡。电网电压条件。本文提出了一种可操作方案,以提高一个SCBC的性能,即双输入中心电容器(DICC)转换器,在不平衡电网电压条件下。使用该提出方案消除了PV电压/功率振荡,从而导致最大的PV能量收集和即使在严重不平衡状态下也能增强电网电流质量。此外,总体直流电压振荡幅度最小化。研究了双线频电流以及DICC电路模型的分析表示,从而可以相应地设计DICC电路参数。本文进一步提出了DICC-PV逆变器在不平衡电网电压条件下的控制策略。所提出的所有理论发现和控制方法都可以衍生给其他类型的SCBC。最后,通过Matlab仿真和实验原型来验证理论发现。

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