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Error Analysis and Correction of the Fluctuation Quantity-Based Method in Harmonic Impedance Identification for Traction Power Supply System

机译:牵引供电系统谐波阻抗辨识中基于波动量的方法的误差分析与校正

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The fluctuation quantity-based method has been widely used because of its simple principle and strong practicability. However, when the harmonic source of the system side fluctuates greatly, the method has a large error. Therefore, in order to accurately evaluate the calculation error of the fluctuation quantity-based method and explore the applicability of the fluctuation quantity-based method, this paper takes the V/v wiring transformer as an example to propose the phase-to-phase harmonic transmission formula of the traction power supply system, and derives the error coefficient of the system harmonic impedance of the calculation by the volatility method. The results show that the calculation error of the fluctuation quantity-based method cannot be neglected. Therefore, an error compensation scheme based on genetic algorithm to identify the impedance parameters is proposed. In order to verify the correctness of the proposed theory and scheme, this paper establishes the simulation model of V/v wiring traction power supply system and conducts the computer simulation analysis. The results show that the error coefficient can accurately reflects the relative error of the fluctuation quantity-based method, and the scheme has good reliability and practicability.
机译:基于波动量的方法由于其原理简单,实用性强而被广泛使用。然而,当系统侧的谐波源波动很大时,该方法具有较大的误差。因此,为了准确评估基于波动量的方法的计算误差并探索基于波动量的方法的适用性,本文以V / v接线变压器为例,提出相间谐波牵引供电系统的传输公式,并通过波动性方法推导计算出的系统谐波阻抗的误差系数。结果表明,基于波动量法的计算误差不能忽略。因此,提出了一种基于遗传算法的阻抗参数识别误差补偿方案。为了验证所提出的理论和方案的正确性,建立了V / v线牵引供电系统的仿真模型,并进行了计算机仿真分析。结果表明,该误差系数能够准确反映基于波动量的方法的相对误差,具有良好的可靠性和实用性。

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