首页> 外文会议>2010 Asia-Pacific Symposium on Electromagnetic Compatibility (APEMC2010) >Influence of power shielded cable and ground on distribution of common mode currents flowing in variable-speed AC motor drive systems
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Influence of power shielded cable and ground on distribution of common mode currents flowing in variable-speed AC motor drive systems

机译:功率屏蔽电缆和地线对变速AC电动机驱动系统中流动的共模电流分布的影响

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摘要

Parasitic common mode (CM) currents unavoidably generated by power converters, in particular PWM inverters, which are widely used in variable-speed AC motor drives in many industrial applications, causes many Electromagnetic Compatibility (EMC) problems. In order to reasonably solve these problems, the understanding of behavior and the knowledge of propagation path of CM currents flowing through the system are indispensable. This paper presents an investigation on influence of power shielded cable length and its position in comparison to ground and on ground effect. These two elements are very important to make CM currents flowing to other parts of the system, especially through the motor. Measurement of the proportion of CM currents returning to CM voltage source via ground and cable shield connected at motor terminal in various configurations, in frequency domain, is carried out to illustrate which propagation path is preferred in the considered frequency range. This allows us to apply an appropriate method to restrict or eliminate CM currents in the desired frequency range. An analytical model corresponding to this experiment will be also established; its results will be compared with the measured ones. The validated model could be later used to predict proportion of CM currents distributed in the system for other configurations.
机译:由功率转换器,特别是PWM逆变器不可避免地产生的寄生共模(CM)电流已在许多工业应用中广泛用于变速AC电动机驱动器中,从而引起许多电磁兼容性(EMC)问题。为了合理地解决这些问题,必须了解行为和对流经系统的CM电流的传播路径的了解。本文对功率屏蔽电缆的长度及其相对于地面的影响以及对地面的影响进行了研究。这两个元素对于使CM电流流至系统的其他部分(尤其是通过电动机)非常重要。在频域中对通过接地和连接在电动机端子上的电缆屏蔽层返回到CM电压源的CM电流的比例进行了测量,以说明在频域中哪种传播路径是优选的。这使我们能够采用适当的方法来限制或消除所需频率范围内的CM电流。还将建立与该实验相对应的分析模型。其结果将与测得的结果进行比较。经过验证的模型可以稍后用于预测在系统中分配用于其他配置的CM电流的比例。

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