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首页> 外文期刊>IEEE Transactions on Power Delivery >A robust phase-coordinates frequency-dependent underground cable model (zCable) for the EMTP
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A robust phase-coordinates frequency-dependent underground cable model (zCable) for the EMTP

机译:用于EMTP的鲁棒的相位坐标频率相关的地下电缆模型(zCable)

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A major difficulty in multiphase cable modeling with traditional electromagnetic transient program like the EMTP is the synthesis of the frequency-dependent transformation matrix which relates modal and phase domain variables. This paper presents a new model (zCable) to represent the frequency-dependence of cable parameters directly in phase coordinates thus avoiding the problems related to frequency-dependent transformation matrices. The cable model is split into two parts: a constant ideal line section and a frequency-dependent loss section. A pi-correction is proposed to solve the problem of different traveling times in the ideal line section. The main advantage of the proposed model as compared to existing frequency-dependent transformation matrix models is the model's absolute numerical stability for strongly asymmetrical cable configurations and for arbitrary fault conditions. In addition, the model parameters are easy to obtain with robust algorithms and the model can be efficiently implemented in the context of a real-time PC-cluster simulator.
机译:使用传统的电磁瞬变程序(如EMTP)进行多相电缆建模的主要困难是合成与模态和相域变量相关的频率相关转换矩阵。本文提出了一种新的模型(zCable),可以直接在相位坐标中表示电缆参数的频率相关性,从而避免了与频率相关的变换矩阵有关的问题。电缆模型分为两部分:恒定理想线段和与频率有关的损耗段。提出了pi校正来解决理想线段中不同行进时间的问题。与现有的与频率相关的变换矩阵模型相比,提出的模型的主要优点是该模型在强非对称电缆配置和任意故障条件下的绝对数值稳定性。此外,可以通过强大的算法轻松获得模型参数,并且可以在实时PC集群模拟器的环境中有效地实现模型。

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