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Grounding of AC and DC low-voltage and medium-voltage drive systems

机译:交流和直流低压和中压驱动系统的接地

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摘要

The grounding of AC and DC motor drive systems should detect and clear ground faults both on the source and load side of the power converters. Most drive systems are separately derived through a step-down transformer, which serves as a drive isolation, as well as rectifier transformer. Isolation transformers on individual or group drive systems, downstream of main substation transformers are also common. An output isolation transformer on an AC drive will isolate the drive electronics, step up the AC voltage from the inverter section and also serve to control high line-to-ground voltages on the motor windings. The grounding system has a profound effect upon the continuity of operations, loading of the solid-state devices and common-mode voltages. This paper discusses the various possibilities of grounding of low-voltage and medium-voltage motor drive systems and shows that a high-resistance grounding system can be often implemented to permit continuity of operations, allow fault detection and limit the transient overvoltage.
机译:交流和直流电动机驱动系统的接地应检测并清除电源转换器的源极和负载侧的接地故障。大多数驱动系统是通过用作驱动隔离器的降压变压器以及整流器变压器单独获得的。单个或组驱动系统上,主变电站变压器下游的隔离变压器也很常见。交流驱动器上的输出隔离变压器将隔离驱动电子设备,提高逆变器部分的交流电压,还可以控制电动机绕组上的高线对地电压。接地系统对操作的连续性,固态设备的负载和共模电压具有深远的影响。本文讨论了低压和中压电机驱动系统接地的各种可能性,并表明可以经常实施高电阻接地系统以允许连续运行,允许故障检测并限制瞬态过电压。

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