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Transient Recovery Voltage Assessment for 138kV Breakers with the New Addition of a Wind Farm

机译:138kV断路器的瞬态恢复电压评估,新增风电场

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Increased short circuit current level due to rapid growth of power network could reach and possibly exceed the capability of existing breakers. An assessment study of existing breakers needs to be performed to guarantee the breakers can operate safely at present and also in the future. A new proposed wind farm is added to a nearby substation. One concern is how the wind farm impacts the substation power system. This paper presents the assessment of the substation power system and determines if transient recovery voltage (TRV) exceed the breaker capability. The assessment was carried out by digital simulation using PSCAD to analyze TRV waveforms. This paper presents the detailed setting-up of the digital model of the substation and surrounded power system. Based on the output, the peak values and rate of rise of the TRV waveforms can be determined. These values were compared with breaker ratings calculated by DEC standard 62271-1 [1]. The studies indicate that breaker TRV does not exceed the capability and the breaker can operate safely with the new addition of a wind farm.
机译:由于电网的快速增长,增加了短路电流水平可以达到,并且可能超过现有断路器的能力。对现有断路器的评估研究需要进行,以保证断路器可以在目前和未来安全运行。将一个新的拟议的风电场添加到附近的变电站。一个问题是风电场如何影响变电站电力系统。本文提出了对变电站电力系统的评估,并确定瞬态恢复电压(TRV)是否超过断路器能力。通过使用PSCAD进行数字仿真进行评估以分析TRV波形。本文介绍了变电站和包围电力系统数字模型的详细建立。基于输出,可以确定TRV波形的峰值值和升高速率。将这些值与通过DEC标准62271-1 [1]计算的断路器额定值进行比较。研究表明,断路器TRV不超过能力,断路器可以随着新增风电场安全地安全地运行。

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