基于直接向量拟合的频率相关直流电缆小信号状态空间模型

S. Kovacevic, D. Jovcic, P. Rault, A. Schwob
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引用次数: 4

摘要

本文提出了一种在状态空间中表示输电线路和电缆的新方法。该方法考虑了线参数的频率依赖性,并将目前最先进的时域通用线模型转化为状态空间。将该模型与最新的单直流电缆和双极直流电缆状态空间模型进行了比较,显示出一定的优势。直流电缆表示不应用克朗减少,这意味着可以实现更高的精度。单直流电缆具有较低的模型阶数和较高的精度,适用于频率上限和电缆长度的宽频谱。电缆越长,频率上限越高,模型阶降越明显。对于频率范围为1khz的70km双极直流电缆,对两种状态空间模型进行了比较,发现所提出的模型在模型阶数略低的情况下获得了更高的精度。更重要的是,所提出的模型成功地在期望的精度标准内表示了相互耦合的影响。此外,通过对双导体直流电缆(双极电缆)的分析,表明该方法克服了在状态空间中表示不平衡多导体线路和电缆的问题。原因是它避免了模态转换。此外,在多导体线路和电缆的情况下,预计该方法有利于更长的系统,更高的频率上限和更多的相互耦合导体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Small signal state space model of the frequency-dependent DC cable based on direct vector fitting
This paper proposes a new method to represent transmission lines and cables in state space. The method accounts for the frequency dependency of line parameters and essentially translates the state of the art time-domain universal line model into state space. The proposed model is compared against the latest state space model for single DC cable and a bipolar DC cable and it shows certain advantages. DC cables are represented without applying Kron reduction which means that a higher accuracy can be achieved. Single DC cable is represented with a lower model order and higher accuracy for a wide spectre of upper frequency limits and cable lengths. The longer the cable and the higher the upper frequency limit, the more pronounced is the model order reduction. The two state space models are also compared for a 70km bipolar DC cable in the frequency range up to 1 kHz and the proposed model achieves higher accuracy with a slightly lower model order. More importantly, the proposed model succeeds at representing the effect of mutual coupling within the desired accuracy criteria. Furthermore, based on the analysis of the two-conductor DC cable (bipolar cable), it is shown that the proposed method overcomes the issue to represent unbalanced multi-conductor lines and cables in state space. The reason is that it avoids modal transformation. Moreover, in case of multi-conductor lines and cables, it is expected that the proposed method is beneficial for longer systems, higher upper frequency limits and for more mutually coupled conductors.
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