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Suggestion of Acceptance Criteria for EMC Immunity Testing of IEC 61850 based Smart Grid Devices

机译:基于IEC 61850的智能电网设备的EMC抗扰度测试的接受标准建议

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International Electronical Committee (IEC) provides testing methods for verifying electromagnetic compatibility (EMC) according to the installation environment of the equipment. Institute of Electrical and Electronics Engineers (IEEE) also provides specific performance criteria for EMC testing of equipment using communications through the IEEE 1613 standard. Newly developed smart grid devices will operate in the form of digital substations using IEC 61850-based mechanisms through the connection of communication networks, not with conventional copper wire-connected substations. It is important to provide a level of interoperability that allows functionality to operate beyond simple information exchange. It is also important to evaluate the device by applying criteria such as communication speed or bit error ratio (BER) that can be applied to general communication devices. However, it will be necessary to evaluate the reliability of the device using the requirements of semantically modelled data requirements through the communication network. In this paper, we propose an acceptance criterion for evaluating EMC performance of smart grid devices connected to communication interface through generic object oriented substation event (GOOSE) packet, which is a data exchange service based on IEC 61850. In particular, we propose a data model of logical node (LN) in IED to check the status or operation when the device is affected by EM disturbance.
机译:国际电子委员会(IEC)提供了根据设备的安装环境验证电磁兼容性(EMC)的测试方法。电气和电子工程师协会(IEEE)还为使用通过IEEE 1613标准进行的通信对设备进行EMC测试提供了特定的性能标准。新开发的智能电网设备将通过通信网络的连接,使用基于IEC 61850的机制以数字变电站的形式运行,而不是使用传统的铜线连接变电站。重要的是要提供一定程度的互操作性,以使功能能够在简单的信息交换之外运行。通过应用可应用于一般通信设备的标准(例如通信速度或误码率(BER))来评估设备也很重要。但是,有必要使用通过通信网络进行语义建模的数据要求的要求来评估设备的可靠性。在本文中,我们提出了一种接受标准,用于评估通过通用面向对象变电站事件(GOOSE)数据包连接到通信接口的智能电网设备的EMC性能,这是一种基于IEC 61850的数据交换服务。特别是,我们提出了一种数据IED中的逻辑节点(LN)模型,以检查设备受到EM干扰时的状态或操作。

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