The impact of high-voltage circuit breaker condition on power system reliability indices

IF 2 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC Iet Generation Transmission & Distribution Pub Date : 2024-11-26 DOI:10.1049/gtd2.13333
Jordon Ashley Grant, Iver Bakken Sperstad, Vijay Venu Vadlamudi, Samuel Perkin, Erlend Sandø Kiel
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Abstract

Condition monitoring data can be used to assess the health of a power system component but is rarely used to assess the reliability of the power system they are part of. For high-voltage circuit breakers (HVCBs), the susceptibility to various failures can be assessed by examining trip coil current (TCC) measurements. HVCBs have two failure modes, failure to trip on command and tripping without a command, which are triggered by various failure mechanisms that in turn may depend on the technical condition of the HVCBs. The aim of this article is to demonstrate a methodology for quantifying the impact that the technical condition of HVCBs has on the power system reliability indices. An equivalent transmission line failure rate considering protection system failures, including failures related to HVCBs, can be calculated by computing contributions from various fault types (FTs). This article proposes a framework that can quantify the frequency of the FTs that are affected by HVCB condition. The system-level effects are then evaluated using approximate methods for power system reliability evaluation. To demonstrate the principles and benefits of this methodology, a case study is presented that incorporates HVCB condition data from the Icelandic transmission grid into an illustrative 4-bus test system; a dataset of 83 TCC measurements from 38 HVCBs from the Icelandic Transmission System Operator is used, together with an outage database of life histories of 464 HVCBs from the Icelandic transmission grid. Results indicate that the condition deterioration associated with the probability of an HVCB failing to trip on command can significantly degrade the reliability indices.

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高压断路器状态对电力系统可靠性指标的影响
状态监测数据可用于评估电力系统部件的健康状况,但很少用于评估它们所组成的电力系统的可靠性。对于高压断路器(HVCBs),可以通过检查跳闸线圈电流(TCC)测量来评估其对各种故障的敏感性。高压断路器有两种失效模式,即指令脱扣失败和无指令脱扣,由各种失效机制触发,而失效机制又取决于高压断路器的技术条件。本文的目的是展示一种量化高压断路器技术状况对电力系统可靠性指标影响的方法。考虑保护系统故障(包括高压断路器相关故障)的等效传输线故障率可以通过计算各种故障类型(FTs)的贡献来计算。本文提出了一个可以量化受高压断路器条件影响的傅立叶变换频率的框架。然后利用电力系统可靠性评估的近似方法对系统级效应进行评估。为了演示这种方法的原理和好处,本文提出了一个案例研究,该案例研究将来自冰岛输电网的高压断路器状态数据纳入说导性4总线测试系统;使用了来自冰岛输电系统运营商的38个高压断路器的83个TCC测量数据集,以及来自冰岛输电网的464个高压断路器寿命历史的停电数据库。结果表明,与高压断路器不能按指令跳闸概率相关的工况恶化会显著降低可靠性指标。
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来源期刊
Iet Generation Transmission & Distribution
Iet Generation Transmission & Distribution 工程技术-工程:电子与电气
CiteScore
6.10
自引率
12.00%
发文量
301
审稿时长
5.4 months
期刊介绍: IET Generation, Transmission & Distribution is intended as a forum for the publication and discussion of current practice and future developments in electric power generation, transmission and distribution. Practical papers in which examples of good present practice can be described and disseminated are particularly sought. Papers of high technical merit relying on mathematical arguments and computation will be considered, but authors are asked to relegate, as far as possible, the details of analysis to an appendix. The scope of IET Generation, Transmission & Distribution includes the following: Design of transmission and distribution systems Operation and control of power generation Power system management, planning and economics Power system operation, protection and control Power system measurement and modelling Computer applications and computational intelligence in power flexible AC or DC transmission systems Special Issues. Current Call for papers: Next Generation of Synchrophasor-based Power System Monitoring, Operation and Control - https://digital-library.theiet.org/files/IET_GTD_CFP_NGSPSMOC.pdf
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