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A DNN based Intelligent Protective Relaying Scheme for Microgrids

机译:基于DNN的微电网智能继电保护方案

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Microgrid mandates a highly accurate and reliable protection measure for safe and secure operation. Reliability of the protecting system becomes a serious concern when the microgrid operates with various types of DG units which includes synchronous, induction and inverter based DGs with different topology and modes of operation. This paper demonstrates an intelligent protection scheme using deep neural network (DNN) to perform the task of fault detection and classification. Fault currents retrieved at the relaying points are given to the proposed protection scheme to perform the desired task. The performance of the scheme is measured with wide variations in system parameters such as modes of operation and network topologies of the microgrid. The scheme is extensively tested on a large dataset even by varying types of inputs and different deep neural network structures. The test results and response time show that the proposed algorithm can be used in real time for protective measures of microgrid.
机译:微电网要求采取高度准确和可靠的保护措施,以确保安全可靠地运行。当微电网与各种类型的DG单元一起运行时,保护系统的可靠性就成为一个严重的问题,这些DG单元包括具有不同拓扑和操作模式的基于同步,感应和逆变器的DG。本文演示了一种使用深度神经网络(DNN)来执行故障检测和分类任务的智能保护方案。在中继点处检索到的故障电流将提供给建议的保护方案,以执行所需的任务。该方案的性能是通过系统参数的广泛变化来衡量的,例如系统的运行模式和微电网的网络拓扑。即使通过不同类型的输入和不同的深度神经网络结构,该方案也已在大型数据集上进行了广泛的测试。测试结果和响应时间表明,该算法可实时用于微电网的保护措施。

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