基于IEC 61850-9-2的区域变电站过程总线体系结构的性能评价

Shantanu Kumar, N. Das, S. Islam
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引用次数: 15

摘要

从保护、继电、控制和自动化的角度来看,以太网通信已经成为数字变电站高速通信的骨干。各大变电站制造商一直在不断升级软件,并在其智能电子设备(IED)中添加新功能,以在过程总线设备中实现多种功能。本文给出了在以太网环境下数据包传输延迟的仿真结果。了解通用面向对象变电站事件(GOOSE)和采样值(SV)的分组传输延迟将有助于用户了解在故障状态下连接在网络中的变电站自动化、控制和保护变电站主要设备,如电流互感器(CT)、电压互感器(VT)、断路器等。传统变电站使用合并单元(MU)与具有IEC 61850-9-2标准的IED进行通信。该标准展示了数据通信的透明性和标准化,同时解决了与可靠性、分组共享和可维护性等相关的问题。然而,由于缺乏信心,流程总线体系结构尚未被业界广泛接受,需要进一步验证。本文采用IEC 61850-9-2 IED并使用优化的网络工程工具(OPNET)模拟器,评估了132kV区域变电站数字保护方案的性能。从保护的角度理解接收关键时间GOOSE和采样值SV消息的延迟是至关重要的,因为数据丢失可能导致保护故障,危及重要的变电站设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of a process bus architecture in a zone substation based on IEC 61850-9-2
Ethernet communication has been the back bone of high speed communication in digital substations from protection relaying, control and automation perspective. Major substation manufacturers have been constantly upgrading softwares and adding new features in their Intelligent Electronic Devices (IED's) to carry out multiple functions in process bus devices. This paper presents simulation results with respect to the delay in packets transfer in an Ethernet environment. Understanding the delay in packet transfer of Generic Object Oriented Substation Event (GOOSE) and Sampled Values (SV) shall assist the user in understanding the substation automation, control and protection of substation primary plants such as current transformers (CT's), voltage transformers (VT's), circuit breakers etc. connected in the network during a fault condition Conventional substation uses Merging Units (MU's) to communicate with the IED's featuring IEC 61850-9-2 standard. This standard exhibits transparency and standardization of data communication while addressing issues related to reliability, packet sharing, and maintainability, etc. However, process bus architecture is yet to be widely accepted in the industry and needs further validation due to lack of confidence. This paper evaluates the performance of a digital protection scheme in a zone substation operating at 132kV, featuring IEC 61850-9-2 IED's and using an optimized network engineering tool (OPNET) simulator. Understanding the delay in receiving time critical GOOSE and sampled value SV messages from protection perspective is critical as loss of data could cause malfunction in the protection jeopardizing vital substation plants.
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