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Fault Detection and Location by Static Switches in Microgrids Using Wavelet Transform and Adaptive Network-Based Fuzzy Inference System

机译:基于小波变换和自适应网络模糊推理系统的微电网静态开关故障检测与定位

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Microgrids are a highly efficient means of embedding distributed generation sources in a power system. However, if a fault occurs inside or outside the microgrid, the microgrid should be immediately disconnected from the main grid using a static switch installed at the secondary side of the main transformer near the point of common coupling (PCC). The static switch should have a reliable module implemented in a chip to detect/locate the fault and activate the breaker to open the circuit immediately. This paper proposes a novel approach to design this module in a static switch using the discrete wavelet transform (DWT) and adaptive network-based fuzzy inference system (ANFIS). The wavelet coefficient of the fault voltage and the inference results of ANFIS with the wavelet energy of the fault current at the secondary side of the main transformer determine the control action (open or close) of a static switch. The ANFIS identifies the faulty zones inside or outside the microgrid. The proposed method is applied to the first outdoor microgrid test bed in Taiwan, with a generation capacity of 360.5 kW. This microgrid test bed is studied using the real-time simulator eMegaSim developed by Opal-RT Technology Inc. (Montreal, QC, Canada). The proposed method based on DWT and ANFIS is implemented in a field programmable gate array (FPGA) by using the Xilinx System Generator. Simulation results reveal that the proposed method is efficient and applicable in the real-time control environment of a power system.
机译:微电网是在电力系统中嵌入分布式发电源的高效手段。但是,如果在微电网内部或外部发生故障,则应使用安装在主变压器次级侧靠近公共耦合点(PCC)的静态开关立即将微电网从主电网断开。静态开关应具有在芯片中实现的可靠模块,以检测/定位故障并激活断路器以立即断开电路。本文提出了一种使用离散小波变换(DWT)和基于自适应网络的模糊推理系统(ANFIS)在静态开关中设计该模块的新颖方法。故障电压的小波系数以及ANFIS的推论结果与主变压器次级侧故障电流的小波能量一起决定了静态开关的控制动作(断开或闭合)。 ANFIS识别微电网内部或外部的故障区域。该方法应用于台湾首个户外微电网试验台,发电量为360.5 kW。使用Opal-RT Technology Inc.(加拿大蒙特利尔,QC)开发的实时模拟器eMegaSim对这种微电网测试台进行了研究。通过使用Xilinx系统生成器,在现场可编程门阵列(FPGA)中实现了基于DWT和ANFIS的建议方法。仿真结果表明,该方法是有效的,适用于电力系统的实时控制环境。

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