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Reduction of Conducted Interference by Steel Armor in Buried Cables: Measurements and Modeling

机译:减少地下电缆中钢铠装的传导干扰:测量和建模

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Switched-mode power supplies in variable-frequency drives often combine good electrical efficiency with generous production of conducted emission. The common-mode (CM) current through the output-to-motor cable may perturb nearby systems via cable-to-cable crosstalk. Parameters relevant for the coupling are the rise--fall times and amplitude of the output current and voltage, and types and lengths of the cables. Of the many techniques to reduce the crosstalk, we investigated a particular one: reduction of the CM current by the armor of the motor cable. The armor is intended for mechanical protection, but may also substantially reduce the crosstalk. In an actual installation, we measured the transient current through the three phase leads of a motor cable. The cable length was 85 m, and it was buried in wet soil for most of its length. We also measured the transfer impedance of the armor up to 10 MHz, and used this to calculate the overall CM current in a coupled cable model using assumed reasonable values for the cable and soil parameters. Measurements and model results agreed well on the amplitude of the dominant resonance at about 300 kHz. The ratio of the inside transients to CM current was a factor of 20.
机译:变频驱动器中的开关模式电源通常将良好的电效率与大量的传导发射结合在一起。通过输出到电动机电缆的共模(CM)电流可能会通过电缆到电缆的串扰干扰附近的系统。与耦合相关的参数是输出电流和电压的上升-下降时间和幅度,以及电缆的类型和长度。在减少串扰的许多技术中,我们研究了一种特殊技术:通过电机电缆的铠装层降低CM电流。装甲旨在提供机械保护,但也可以大大减少串扰。在实际安装中,我们测量了通过电机电缆的三相引线的瞬态电流。电缆长度为85 m,大部分长度都埋在潮湿的土壤中。我们还测量了高达10 MHz的铠装的传输阻抗,并使用假定的合理电缆和土壤参数值,使用此值来计算耦合电缆模型中的总CM电流。测量和模型结果在大约300 kHz的主共振幅度上非常吻合。内部瞬变与CM电流之比为20倍。

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