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Laboratory Investigation of IEC 61850-9-2-Based Busbar and Distance Relaying With Corrective Measure for Sampled Value Loss/Delay

机译:基于IEC 61850-9-2-的母线和距离继电器的实验室研究,并采用了纠正措施来消除采样值的丢失/延迟

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摘要

After successful implementation of IEC 61850-8-1-based GOOSE at several power substations worldwide, major protective device vendors are currently developing interoperable products for IEC 61850-9-2-based time-critical sampled value (SV) messages over the digital process bus. Unlike GOOSE, the same SV message is not repeated several times and, therefore, it is important to analyze the impact of SV loss or delay on protection functions. This paper presents the hardware implementation of a typical IEC 61850-9-2-based process bus communication network for digital protection systems to investigate the proposed corrective measure for SV loss/delay. For the detailed testing, various process bus devices (e.g. protection intelligent electronic devices (IEDs), merging units (MUs), etc.) are developed over industrial embedded systems with a hard-real-time platform. The SV estimation algorithm is implemented as a part of bus differential and transmission-line distance protection IEDs, and it is tested for various SV loss/delay scenarios and power system fault conditions.
机译:在全球多个变电站成功实施基于IEC 61850-8-1的GOOSE之后,主要的保护设备供应商目前正在通过数字过程开发用于基于IEC 61850-9-2的时间关键采样值(SV)消息的互操作产品。总线。与GOOSE不同,同一条SV消息不会重复多次,因此,分析SV丢失或延迟对保护功能的影响非常重要。本文介绍了用于数字保护系统的典型基于IEC 61850-9-2的过程总线通信网络的硬件实现,以研究针对SV丢失/延迟提出的纠正措施。为了进行详细测试,在具有硬实时平台的工业嵌入式系统上开发了各种过程总线设备(例如保护智能电子设备(IED),合并单元(MU)等)。 SV估计算法被实现为总线差动和传输线距离保护装置的一部分,并针对各种SV损耗/延迟场景和电力系统故障情况进行了测试。

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