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Capacitor failure analysis: a troubleshooting case study

机译:电容器故障分析:故障排除案例研究

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Adding power factor correction capacitors provides well-known benefits to industrial plants. These benefits include power factor correction, voltage support, and release of system capacity. Engineering judgment must be used, however, when applying capacitors in power systems with excessive harmonics and/or transients. Capacitors might not survive long in such environments if they are improperly applied. Capacitors are also known to cause power quality problems, such as oscillatory switching transients, and can possibly amplify other problems, such as harmonics. The same piece of equipment that solves some problems can cause other problems. Adjustable speed drives (ASDs) are another example of such equipment. This paper investigates capacitor failures and fuse operations in an automatically switched capacitor bank in an industrial facility. The fuses that cleared were protecting individual capacitor steps in the bank. It was initially believed that harmonics were the source of the problem. The investigation determined that transients from an unlikely source were to blame.
机译:添加功率因数校正电容器可为工厂提供众所周知的好处。这些好处包括功率因数校正,电压支持和系统容量释放。但是,当在谐波和/或瞬变过大的电力系统中使用电容器时,必须使用工程判断力。如果电容器使用不当,在这种环境下可能无法长期生存。还已知电容器会引起电能质量问题,例如振荡开关瞬变,并且可能会放大其他问题,例如谐波。解决某些问题的同一台设备可能会导致其他问题。可调速驱动器(ASD)是此类设备的另一个示例。本文研究了工业设施中自动切换电容器组中的电容器故障和保险丝操作。清除的保险丝可以保护组中的各个电容器台阶。最初认为谐波是问题的根源。调查确定是由不太可能的源头造成的瞬变造成的。

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