Positive Sequence Superimposed Based Islanding Detection Method Used in Distributed Generation

Javeed Bashir, P. Jena
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Abstract

This paper presents a passive method based localized islanding detection method for distributed generation (DG) connected to a main grid. The approach in this paper is based on the calculation of the magnitude of positive sequence based superimposed components of current and voltage, and the angle between them at the DG end. These three physical quantities altogether are used to identify the islanding. The prevailing active detection techniques introduce deliberately disturbances into the system which might lead to problems related to power quality, stability, and reliability of the power system. On the contrary, passive methods based islanding detection techniques has the issue of large non-detection zone (NDZ). The proposed technique overcomes the NDZ problem and does not introduce any disturbances. PSCAD/EMTDC is used to simulate the two systems. Various tests are carried out on these systems to access the execution of the proposed method and it was found that the suggested method has least NDZ and can detect the islanding within 10 ms well below the time required by a recloser which is 150 ms.
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分布式发电中基于正序列叠加的孤岛检测方法
提出了一种基于被动方法的分布式发电并网局部孤岛检测方法。本文的方法是基于计算基于电流和电压叠加分量的正序幅值,以及它们在DG端之间的夹角。这三个物理量一起用来确定岛屿。现行的有源检测技术故意在系统中引入干扰,这可能导致与电力系统的质量、稳定性和可靠性有关的问题。相反,基于孤岛探测技术的被动方法存在较大的未探测区(NDZ)问题。所提出的技术克服了NDZ问题,并且不引入任何干扰。采用PSCAD/EMTDC对两种系统进行仿真。在这些系统上进行了各种测试,以访问所建议的方法的执行,发现所建议的方法具有最小的NDZ,并且可以在10 ms内检测到孤岛,远远低于重合闸所需的150 ms时间。
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