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A design scheme of line current differential protection based on IEC61850

机译:基于IEC61850的线路电流差动保护设计方案

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Current differential relay plays a very important role in transmission line protection because of its absolute selectivity for isolating the failure equipment. Nowadays, in digital substation, lots of new technologies (such as non-conventional instrument transformers, process bus, time synchronization, embedded Ethernet and information modeling following IEC 61850) bring huge challenge for relay design and application. This paper reviews traditional technical solutions to the transmission line current differential protection, addressing its basic principle, typical architecture, differential criterion and communication requirement. Then a new design scheme of line current differential protection is discussed in detail. Network time synchronization protocol - IEEE 1588 and process bus communications based on IEC 61850-9-2 are introduced into the new scheme. The communication between substations adopts directly optical fiber link or wide area Ethernet networks. Consequently, the protections in different substations receive synchronous sampled value of both sides though its own merging unit is just like communication in the same substation. Information exchange models (Logic Devices and Logic Nodes) in the transmission line protection are also established. There are many advantages behind this scheme, one significant being to increase the interoperability and availability of protective relay.
机译:电流差动继电器在传输线保护中起着非常重要的作用,因为它具有绝对的选择性来隔离故障设备。如今,在数字变电站中,许多新技术(例如遵循IEC 61850的非常规仪表变压器,过程总线,时间同步,嵌入式以太网和信息建模)给继电器设计和应用带来了巨大挑战。本文回顾了输电线路电流差动保护的传统技术解决方案,阐述了其基本原理,典型架构,差动判据和通信要求。然后详细讨论了一种新的线路电流差动保护设计方案。网络时间同步协议-IEEE 1588和基于IEC 61850-9-2的过程总线通信被引入到新方案中。变电站之间的通信直接采用光纤链路或广域以太网。因此,尽管不同变电站中的保护装置本身的合并单元就像同一变电站中的通信一样,但不同变电站中的保护装置会接收到双方的同步采样值。还建立了传输线保护中的信息交换模型(逻辑设备和逻辑节点)。该方案背后有许多优点,其中一个重要的优点是可以提高保护继电器的互操作性和可用性。

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