自动巴士转乘计划要考虑的保护措施

J. Cramond, A. Carreras, V. Duong
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引用次数: 6

摘要

自动总线转换方案(ABTS)为电力系统控制和自动化运行提供了许多好处。在主干线-主干线(M-T-M)总线配置中,由两个独立的电源和一个常开的断路断路器组成,ABTS提供了一种快速的方法来自动恢复受其自身主电源损失影响的总线。自动重新转移可以通过在电源返回时打开连接断路器并关闭受影响的主断路器来完成。利用微处理器继电器的先进技术,特别是与GOOSE应用相结合,实现ABTS可以实现运行速度和可靠性,并降低投资成本。然而,复杂的系统保护和协调问题可能被忽视;包括:;断路器跳闸和闭合线圈情况:受影响母线的电机涌流,变压器和/或健康母线的主馈线过载:受影响主电源恢复后对两个母线进行同步检查:连接断路器开关故障:与子馈线合闸故障的保护协调:断路器故障:无母线差动继电器的母线保护。这篇技术论文将介绍一个实现自动公交换乘方案的实际项目。重点讨论了应用继电器功能和逻辑来解决上述系统保护和协调问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protections to consider with Automatic Bus Transfer Scheme
Automatic Bus Transfer Scheme (ABTS) provides many benefits to electric power system control and automation operations. In a Main-Tie-Main (M-T-M) bus configuration consisting of two independent sources with a normally open tie breaker, the ABTS offers a quick way to automatically restore a bus that is affected by a loss of its own main source. Automatic retransfer can be done by opening the tie breaker and closing the affected main breaker upon the return of the source. With advanced technology in microprocessor relays, especially coupled with GOOSE application, implementing ABTS can achieve operational speed and reliability and reduced investment cost. However there are complicated system protection and coordination issues that could be overlooked; including: ; Circuit breaker trip and close coil conditions : Motor inrush from the affected bus, Transformer and/or main feeder overload from the healthy bus : Sync check for both buses after recovery of the affected main source : Tie breaker switch onto fault : Protection coordination with sub-feeder close-in fault : Breaker failures : Main bus protection without bus differential relay. This technical paper will present a live project that implements the Automatic Bus Transfer Scheme. Discussion focuses on applying relay functions and logic to resolve the above mentioned system protection and coordination issues.
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