首页> 外文期刊>International journal of electrical power and energy systems >Low cost microcontroller based fault detector, classifier, zone identifier and locator for transmission lines using wavelet transform and artificial neural network: A hardware co-simulation approach
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Low cost microcontroller based fault detector, classifier, zone identifier and locator for transmission lines using wavelet transform and artificial neural network: A hardware co-simulation approach

机译:基于低成本微控制器的小波变换和人工神经网络的故障检测器,分类器,区域标识符和传输线定位器:一种硬件协同仿真方法

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摘要

A low cost, fast and reliable microcontroller based protection scheme using wavelet transform and artificial neural network has been proposed and its effectiveness evaluated in real time. The proposed scheme, based on the hardware co-simulation approach performs all the functions of transmission line protection i.e. fault detection/classification, fault zone/section identification and location estimation. The fault detection/classification and zone identification algorithms use fundamental frequency current component to estimate a fault index. The fault location estimation module uses wavelet transform coefficients in hybridization with a parallel artificial neural network structure. For hardware implementation, a 8-bit ATmega microcontroller is used and interfaced with the simulated power system model using Integrated Development Environment (IDE). The scheme is tested on a power system model of 400 kV, 50 Hz three phase double circuit line with source at both the ends. Laboratory tests have been performed in real time for 20,000 fault cases including evolving faults with varying fault resistance, fault inception angle, fault distance, direction of power flow angle and its magnitude. The tests confirm the suitability and reliability of proposed scheme even with Current Transformer (CT) saturation. The implementation of the proposed approach on a low cost microcontroller with the lesser execution time, makes the prototype ideal for implementation on a digital platform (digital relay), thus leading to financial viability and sustainability of the protection scheme. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种基于小波变换和人工神经网络的低成本,快速,可靠的基于微控制器的保护方案,并对其有效性进行了实时评估。所提出的方案基于硬件协同仿真方法来执行传输线保护的所有功能,即故障检测/分类,故障区域/区段识别和位置估计。故障检测/分类和区域识别算法使用基频电流分量来估计故障指标。故障位置估计模块将小波变换系数与并行人工神经网络结构混合使用。对于硬件实现,使用8位ATmega微控制器,并使用集成开发环境(IDE)与仿真的电源系统模型接口。该方案在400 kV,50 Hz三相双回路线路(两端带有电源)的电力系统模型上进行了测试。已对20,000个故障案例进行了实时的实验室测试,包括不断发展的故障,这些故障具有不断变化的电阻,故障起始角,故障距离,潮流角方向及其大小。测试证实了即使在电流互感器(CT)饱和的情况下所提出方案的适用性和可靠性。该方法在执行时间较短的低成本微控制器上的实现,使该原型非常适合在数字平台(数字中继)上实现,从而带来了保护方案的财务可行性和可持续性。 (C)2016 Elsevier Ltd.保留所有权利。

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