A flexible islanding identification technique for PV based grid-tied systems

Praveen Raj Rajaswamy Sarojam, J. S. Savier
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Abstract

The phenomenon of islanding, which occurs in grid integrated distributed generators (DGs), poses significant challenges and potential risks for customers, utility providers, and operational personnel. Detecting islanding quickly and accurately is crucial. The issues related to the conventional islanding methods paved the way in developing a hybrid islanding identification scheme. The developed method achieves accurate results within a reduced time span of 30 ms. The hybrid technique combines the passive method of sliding window based moving average (SWMA) for faster detection and the active method of asymmetrical bilateral reactive power perturbation (ABRPP) for improved precision. The developed hybrid method is simulated and tested using MATLAB/Simulink 2023a. It undergoes testing under various load conditions, including small and large power mismatches between DG generation and local load demand, as well as different load quality factors (QF). Additionally, the hybrid algorithm demonstrates no nuisance tripping when subjected to different load switching conditions such as capacitor switching, motor load switching, and nonlinear load switching. A comparison with existing islanding detection methods confirms the accuracy and speed of the proposed method in identifying islanding conditions.
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光伏并网系统的灵活孤岛识别技术
电网集成分布式发电机(DG)中出现的孤岛现象给客户、公用事业供应商和操作人员带来了巨大挑战和潜在风险。快速准确地检测孤岛现象至关重要。与传统孤岛检测方法相关的问题为开发混合孤岛识别方案铺平了道路。所开发的方法可在 30 毫秒的时间跨度内获得准确结果。该混合技术结合了可加快检测速度的被动式滑动窗口移动平均法(SWMA)和可提高精度的主动式非对称双边无功功率扰动法(ABRPP)。使用 MATLAB/Simulink 2023a 对所开发的混合方法进行了模拟和测试。它在各种负载条件下进行了测试,包括 DG 发电和本地负载需求之间的大小功率不匹配,以及不同的负载质量因子 (QF)。此外,该混合算法在不同的负载切换条件下(如电容器切换、电机负载切换和非线性负载切换)均未出现骚扰跳闸。通过与现有孤岛检测方法的比较,证实了所提方法在识别孤岛条件方面的准确性和速度。
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