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Analysis of PI and PR controllers for distributed power generation system under unbalanced grid faults

机译:不平衡电网故障下分布式发电系统PI和PR控制器的分析

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It is the general trend to increase the electricity production using distributed power system (DPGS), which is based on renewable energy sources such as wind, solar, fuel cell etc. These systems are to be properly controlled in order to provide reliable power to the utility network. For that power electronics converters are used as an interfacing device between DPGS and utility network. In case of unbalanced fault, the major problem in distributed power generation system is the phase unbalance which causes the power quality problem along with grid instability. This paper discuses the implementation of two different controllers namely Proportional — integral (PI) and proportional resonant (PR) controllers in order to obtain the control of grid side converter during single phase to ground fault. The analysis includes the grid current harmonic distortion along with the variation of active and reactive power during the fault condition. The system is simulated using MATLAB software and simulation results demonstrate the effectiveness of both the controller.
机译:使用分布式电力系统(DPG)增加电力生产的一般趋势,该电力系统基于可再生能源,如风,太阳能,燃料电池等。这些系统将被适当地控制,以便为此提供可靠的电力实用网络。对于该电力电子转换器,用作DPG和公用事业网络之间的接口设备。在不平衡故障的情况下,分布式发电系统中的主要问题是相位不平衡,导致电力质量问题以及网格不稳定性。本文讨论了两个不同控制器的实现,即比例 - 积分(PI)和比例谐振(PR)控制器,以便在单相到接地故障期间获得电网侧转换器的控制。该分析包括网格电流谐波失真以及在故障条件期间的主动和无功功率的变化。使用MATLAB软件模拟系统,仿真结果证明了控制器的有效性。

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