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A Nondestructive Islanding Detection Method Based on Adaptive and Periodic Disturbance on Reactive Power Output of Inverter-Based Distributed Generation

机译:基于自适应和周期性扰动的分布式发电无功输出无损孤岛检测方法

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In order to detect islanding nondestructively, an islanding detection method for microgrid is proposed based on adaptive and periodic disturbance on the reactive power output of inverter-based distributed generation (DG). The first two parts of the disturbance in a cycle form a symmetric triangular shape and the disturbance can adaptively adjust its peak value and cycle time for two purposes. One is to minimize the total amount of the disturbance. The other is to guarantee that the absolute value of the rate of change of frequency (ROCOF) is constant during islanding, which can be utilized to be a criterion to detect islanding. The method can be applied on the DG either operating at a unity power factor or generating both active and reactive power simultaneously. Moreover, it helps to avoid the serious transient process during control strategy transformation of the DG for microgrid islanded operation. According to the anti-islanding test system in the IEEE Std. 929-2000 and IEEE Std. 1547-2003, several study cases are carried out in the PSCAD/EMTDC environment. The simulation results show that the proposed method can detect islanding rapidly and nondestructively. Moreover, it also performs effectively for the system with multiple DGs.
机译:为了无损检测孤岛,提出了一种基于自适应和周期性扰动的逆变器分布式发电无功输出的微电网孤岛检测方法。周期中的前两个干扰部分形成对称的三角形,并且干扰可以出于两个目的自适应地调整其峰值和周期时间。一种是最大程度地减少干扰。另一个是要确保孤岛期间频率变化率(ROCOF)的绝对值恒定,这可以用作检测孤岛的标准。该方法既可以应用于以统一功率因数运行的DG,也可以同时生成有功和无功功率。此外,它有助于避免在用于微电网孤岛运行的DG的控制策略转换过程中出现严重的瞬态过程。根据IEEE Std中的防孤岛测试系统。 929-2000和IEEE标准。 1547-2003年,在PSCAD / EMTDC环境中进行了一些研究案例。仿真结果表明,该方法可以快速,无损地检测出孤岛。此外,它对于具有多个DG的系统也有效。

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