Modeling of constant distributed parameter transmission line for simulation of natural and envelope waveforms in power electric networks

F. Gao, K. Strunz
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引用次数: 17

Abstract

A transmission line model with constant distributed parameters for the efficient simulation of diverse transients in power electric networks is proposed. The novelty of the model lies in its capability to simulate both natural waveforms as observed in reality and envelope waveforms that modulate AC carriers. To achieve the bridging between natural and envelope waveforms, the model processes analytic signals whose Fourier spectrums can be shifted. The shift frequency is introduced as a simulation parameter in addition to the time step size. Interpolation is used to obtain results when the wave propagation time between both ends of the line is not an integer multiple of the time step size of the simulation. The model is implemented in a nodal analysis based simulator and validated through the study of the energization of a transmission line.
电力网络中自然波形和包络波形仿真的常分布参数传输线建模
为了有效地模拟电网中的各种暂态,提出了一种具有恒定分布参数的输电线路模型。该模型的新颖之处在于它能够模拟现实中观察到的自然波形和调制交流载波的包络波形。为了实现自然波形和包络波形之间的桥接,该模型对傅立叶谱可以移位的分析信号进行处理。除了时间步长外,还引入了移位频率作为仿真参数。当波在线两端之间的传播时间不是模拟时间步长的整数倍时,采用插值法得到结果。在基于节点分析的仿真器中实现了该模型,并通过对输电线路通电情况的研究进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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