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Over/Undervoltage and Undervoltage Shift of Hybrid Islanding Detection Method of Distributed Generation

机译:分布式发电混合孤岛检测方法的过/欠压和欠压偏移

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摘要

The mainly used local islanding detection methods may be classified as active and passive methods. Passive methods do not perturb the system but they have larger nondetection zones, whereas active methods have smaller nondetection zones but they perturb the system. In this paper, a new hybrid method is proposed to solve this problem. An over/undervoltage (passive method) has been used to initiate an undervoltage shift (active method), which changes the undervoltage shift of inverter, when the passive method cannot have a clear discrimination between islanding and other events in the system. Simulation results on MATLAB/SIMULINK show that over/undervoltage and undervoltage shifts of hybrid islanding detection method are very effective because they can determine anti-islanding condition very fast. ΔP/P > 38.41% could determine anti-islanding condition within 0.04 s; ΔP/P < −24.39% could determine anti-islanding condition within 0.04 s; −24.39% ≤ ΔP/P ≤ 38.41% could determine anti-islanding condition within 0.08 s. This method perturbed the system, only in the case of −24.39% ≤ ΔP/P ≤ 38.41% at which the control system of inverter injected a signal of undervoltage shift as necessary to check if the occurrence condition was an islanding condition or not.
机译:主要使用的局部孤岛检测方法可以分为主动方法和被动方法。被动方法不会干扰系统,但是它们具有较大的非检测区域,而主动方法则具有较小的非检测区域,但它们会干扰系统。本文提出了一种新的混合方法来解决这个问题。当被动方法不能清楚地区分系统中的孤岛事件和其他事件时,可使用过压/欠压(被动方法)来启动欠压偏移(主动方法),该方法会改变逆变器的欠压偏移。在MATLAB / SIMULINK上的仿真结果表明,混合孤岛检测方法的过/欠电压和欠电压偏移非常有效,因为它们可以非常快速地确定反孤岛状态。 ΔP/ P> 38.41%可以在0.04 s内确定反孤岛状态; ΔP/ P <-24.39%可以在0.04 s内确定反孤岛状态; −24.39%≤ΔP/ P≤38.41%可以在0.08 s内确定防孤岛状态。仅在−24.39%≤ΔP/ P≤38.41%的情况下,该方法才会干扰系统,在这种情况下,逆变器的控制系统会根据需要注入欠压偏移信号,以检查发生条件是否为孤岛状态。

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