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GPS satellite synchronized test systems recreate fault conditions to troubleshoot protective relay schemes

机译:GPS卫星同步测试系统会重新创建故障条件以对保护继电器方案进行故障排除

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El Paso Electric had been experiencing misoperations on a segregated phase comparison (SPCU-1A) relay scheme at the Caliente substation (a 345 kV and 115 kV switching station). For faults occurring on the AMRAD to Caliente transmission line, the SPCU schemes for both the AMRAD-Caliente and Newman-Caliente 345 kV transmission lines operated, leaving the east side of El Paso without a 345 kV source. Fault records were taken at the three sites (AMRAD, Newman and Caliente). Composite files were created from the AMRAD and Caliente, and Newman and Caliente waveforms. Hathaway Composite software was used to time-scew, or "line up", the fault inception at the different substations for each file. These files were then converted to IEEE COMTRADE file format using Hathaway EX-IMPORT software. AVO Multi-Amp PulseMaster software was then used to create test files by adding prefault data and converting waveform magnitudes to secondary values. Portable Global Positioning System (GPS) satellite receivers were used to synchronously begin the automated end-to-end testing of the relay schemes. The synchronous test system was used to provide repeatability in testing and verifying both the AMRAD and Newman protection schemes. Changes were made to peripheral devices (such as current transformers) as well as to jumper locations within the relays. The test files were used to verify the response of the relay schemes to these changes.
机译:El Paso Electric在Caliente变电站(345 kV和115 kV切换站)的偏析相比较(SPCU-1A)继电器方案上经历了误操作。对于AMRAD发生的故障到Caliente传输线,AMRAD-Caliente和Newman-Caliente 345 KV输电线路的SPCU方案,留下了EL PASO的东侧,没有345 kV源。在三个地点(Amrad,Newman和Caliente)拍摄了故障记录。复合文件是从AMRAD和Caliente创建的,以及纽曼和Caliente波形。 Hathaway复合软件用于时间 - SCEW或“排队”,每个文件的不同变电站的故障初始化。然后使用Hathaway Ex-Import软件将这些文件转换为IEEE Comtrade文件格式。然后,AVO多AMP Pulsemaster软件通过添加预预制数据并将波形大小转换为辅助值来创建测试文件。便携式全球定位系统(GPS)卫星接收器用于同步开始继电器方案的自动端到端测试。同步测试系统用于在测试和验证AMRAD和Newman Protection方案中提供可重复性。对外围设备(例如电流互感器)以及继电器内的跳线位置进行更改。测试文件用于验证继电器方案对这些更改的响应。

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