基于IEC61850 GOOSE的区域选择性联锁方案在工业应用中的实际考虑

T. Zhao, L. Sevov
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引用次数: 5

摘要

本文概述了基于IEC61850 GOOSE消息传递的区域选择性联锁(ZSI)方案在工业应用中的实际考虑。考虑因素从正常的瞬时过流(IOC)保护元件协调扩展到相位和接地保护的定时过流(TOC)保护元件协调,从一个电压级别扩展到多个电压级别,从ZSI方案扩展到快速母线跳闸方案。当变压器馈线采用ZSI方案时,避免变压器涌流引起的麻烦跳闸是一个主要问题,这使得定时过流保护仅在IOC上使用。当电机馈线涉及ZSI方案时,需要考虑电机锁定电流,因此也使用定时过流来代替IOC元件。文中还讨论了在不同的电机电路、断路器或接触器保险丝组合中采用不同的保护装置所产生的影响。通信网络在基于IEC61850 GOOSE消息传递的ZSI方案中起着重要的作用。在考虑ZSI阻塞时间时,必须考虑所有影响因素。这包括断路器或承包商打开时间,继电器I/O响应时间和通信网络中的消息传输时间。利用先进的网络技术减少和分离网络流量是成功的关键。通信网络冗余需要仔细考虑,并作为项目每个阶段的重要步骤来实施:在早期规划,设置和执行中。开关设备和电机控制中心的详细安排和配置是另一个需要考虑的因素,以适应使用当今可用技术进行通信的智能电子设备(ied)的数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Practical considerations of applying IEC61850 GOOSE based zone selective interlocking scheme in industrial applications
This paper gives an overview on the practical considerations when IEC61850 GOOSE messaging based Zone Selective Interlocking (ZSI) scheme is applied in industrial applications. Considerations are extended from normal instantaneous overcurrent (IOC) protection elements coordination, to timed overcurrent (TOC) protection elements coordination for both phase and ground protection, from one voltage level to multiple voltage levels, from ZSI schemes to fast bus tripping schemes. When transformer feeders are involved with a ZSI scheme, avoiding nuisance trip caused by transformer inrush current is a major concern that makes timed overcurrent protection to be used over IOC only. When motor feeders are involved with a ZSI scheme, motor lockout current need be considered, so timed overcurrent is also used instead of IOC element. The impact of different protection devices used in different motor circuits, breaker or contactor fuse combination is also discussed in the paper. Communication network plays an important role in IEC61850 GOOSE messaging based ZSI schemes. In consideration of ZSI blocking time, all influencing factors have to be taken into account. This includes breaker or contractor opening time, relay I/O response time and messages traveling time in the communication network. Reducing and separating network traffic by using advanced network technology is a key for the success. Communication network redundancy needs to be carefully considered and implemented as an important step in each stage of the project: in the early planning, the setup and the execution. Detailed arrangement and configuration of the switchgear and the motor control center is another factor to consider, in terms to accommodate the number of intelligent electronic devices (IEDs), which communicate using the technology available today.
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