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A new method to point of common coupling voltage control in distribution grid‐connected photovoltaic systems

机译:配网光伏发电系统中公共耦合电压控制点的新方法

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摘要

Nowadays, in addition to providing active power to the local loads, photovoltaic systems are helping the grid to control the point of common coupling voltage. In this paper, a new version of instantaneous reactive power theory has been proposed to control the point of common coupling voltage. The advantages of using this method are the absence of phase-locked loop and the application of simple calculations to raise the speed of the system response. Moreover, the proposed method is in such a way so that it allows the system to mitigate the symmetrical and asymmetrical voltage sag and swell; consequently, the quality of power delivered by photovoltaic system to the grid will be improved. On the other hand, the proposed structure, in addition to increasing the reliability of power injection, maintains providing of balanced active power in the presence of unbalanced reactive power without the need to additional controllers. To validate the proposed structure, the system has been tested on IEEE 33-bus radial distribution grid and the results are presented from a dynamic simulation by using MATLAB/SIMULINK. According to the results, the proposed method regulates the point of common coupling voltage with a response time of about 0.2second that is faster than conventional control strategies.
机译:如今,光伏系统除了向本地负载提供有功功率外,还帮助电网控制公共耦合电压点。本文提出了一种新的瞬时无功功率理论来控制公共耦合电压点。使用此方法的优点是不存在锁相环,并且可以通过简单的计算来提高系统响应速度。此外,所提出的方法以使得系统减轻对称和非对称电压骤降和骤升的方式。因此,将改善光伏系统向电网传输的电能质量。另一方面,所提出的结构除了增加功率注入的可靠性之外,在不平衡无功功率存在的情况下还保持提供平衡的有功功率,而无需额外的控制器。为了验证所提出的结构,该系统已经在IEEE 33总线径向分布网格上进行了测试,并通过使用MATLAB / SIMULINK进行了动态仿真,给出了结果。根据结果​​,所提出的方法以大约0.2秒的响应时间来调节公共耦合电压的点,该响应时间比常规控制策略更快。

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