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Inverter Control for Power Injection from PV Sources in Microgrids Under Unbalanced Power Grid and Load Conditions

机译:在不平衡电网下微电网中PV源的电力注入逆变器控制和负载条件

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The increase in solar power penetration during the last years has prompted development of control techniques to inject power into grids with wide and sometimes varying characteristics. Among them, microgrids represent small versatile networks with different load types. Some microgrids require power injection at the three phase level, with stringent tolerance levels, as dictated by IEEE Standard 1547. This work presents the results of using two type of strategies, the first using direct power control DPC, and the second using d/q control. The connection to the power grid uses an L-filter with (DPC) and an LCL-filter with a PI controller in d/q coordinates. Simulations show that the DPC controller behaves well under wide varying conditions, but requires large filter inductance, while the d/q controller with LCL-filter needs special compensation to reduced inherent oscillations due to the LCL-filter.
机译:过去几年的太阳能渗透的增加促使控制技术的发展进入具有宽且有时变化特性的网格。其中,微电网代表具有不同负载类型的小多功能网络。一些微电网需要在三相级别的电力注入,具有严格的公差水平,如IEEE标准1547所示。这项工作提出了使用两种类型的策略,首次使用直接功率控制DPC的结果,以及第二种使用D / Q控制。与电网的连接使用具有(DPC)的L滤波器和LCL过滤器,在D / Q坐标中具有PI控制器。模拟表明,DPC控制器在宽变化的条件下表现良好,但需要大的滤波器电感,而带有LCL过滤器的D / Q控制器由于LCL过滤器而需要对降低的固有振荡进行特殊补偿。

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