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Modal decoupling of overhead transmission lines using real and constant matrices: Influence of the line length

机译:使用实矩阵和常数矩阵的架空传输线的模态解耦:线长的影响

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The Clarke's matrix is a well-known real and constant transformation matrix used for modal transformation in three-phase transmission lines modeling. Although modal analysis has been widely discussed in the technical literature on power system modeling, a new content is approached in this research proving that the approximation using an exact and constant modal transformation matrix depends on both the frequency-dependent parameters and transmission line's length. As an important conclusion, the approach using the Clarke's matrix leads to more accurate results considering long transmission lines. There are two methods for modal decoupling in power systems modeling. The first uses only a single constant and real transformation matrix during the entire modeling/simulation routine. The second uses the frequency-dependent transformation matrix for parameters decoupling into the propagation modes and the Clarke's matrix for mode-to-phase transformation of voltage and current values during simulations. The accuracy of these two modeling/simulation processes are evaluated, in the time and frequency domains, based on results obtained from a reference routine that employs the exact frequency dependent matrix in modal transformations and numerical transforms for simulation in the time domain. The proposed analysis proves that the accuracy of both methods varies with the line length during electromagnetic transient simulations that leads to peak errors up to approximately 10%. The influence of the line length in modal analysis techniques was not approached in previous references on power system modeling, which represents the original contribution of this paper. (C) 2017 Elsevier Ltd. All rights reserved.
机译:Clarke矩阵是众所周知的实常数变换矩阵,用于三相传输线建模中的模态变换。尽管模态分析已在有关电力系统建模的技术文献中进行了广泛讨论,但本研究采用了新的内容,证明使用精确且恒定的模态变换矩阵进行逼近取决于频率相关参数和传输线的长度。作为一个重要的结论,考虑到较长的传输线,使用克拉克矩阵的方法可得出更准确的结果。电力系统建模中有两种方法可以进行模态解耦。在整个建模/模拟例程中,第一个仅使用单个常数和实数转换矩阵。第二种方法使用频率相关的转换矩阵将参数解耦到传播模式,而克拉克矩阵使用模拟过程中的电压和电流值的模式到相位转换。基于从参考例程获得的结果,在时域和频域中评估了这两个建模/仿真过程的准确性,该参考例程在模态变换和数值变换中采用了精确的频率相关矩阵进行时域仿真。所提出的分析证明,在电磁瞬态仿真期间,两种方法的精度都随线长而变化,从而导致峰值误差高达大约10%。在以前的参考文献中,没有讨论线长对模态分析技术的影响,这对本文的研究是有贡献的。 (C)2017 Elsevier Ltd.保留所有权利。

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