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Simulation of Voltage and Current Distributions in Transmission Lines Using State Variables and Exponential Approximation

机译:利用状态变量和指数近似法模拟传输线中的电压和电流分布

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A new method for simulating voltage and current distributions in transmission lines is described. It gives the time domain solution of the terminal voltage and current as well as their line distributions. This is achieved by treating voltage and current distributions as distributed state variables (DSVs) and turning the transmission line equation into an ordinary differential equation. Thus the transmission line is treated like other lumped dynamic components, such as capacitors. Using backward differentiation formulae for time discretization, the DSV transmission line component is converted to a simple time domain companion model, from which its local truncation error can be derived. As the voltage and current distributions get more complicated with time, a new piecewise exponential with controllable accuracy is invented. A segmentation algorithm is also devised so that the line is dynamically bisected to guarantee that the total piecewise exponential error is a small fraction of the local truncation error. Using this approach, the user can see the line voltage and current at any point and time freely without explicitly segmenting the line before starting the simulation.
机译:描述了一种模拟传输线中电压和电流分布的新方法。它给出了端子电压和电流及其线分布的时域解。这可以通过将电压和电流分布视为分布状态变量(DSV)并将传输线方程式转换为常微分方程式来实现。因此,传输线就像其他集总的动态组件(如电容器)一样对待。使用用于时间离散的后向微分公式,将DSV传输线分量转换为简单的时域伴侣模型,从中可以得出其局部截断误差。随着电压和电流分布随着时间变得越来越复杂,发明了一种具有可控精度的新分段指数。还设计了一种分割算法,以便将线动态平分以确保总的分段指数误差仅是局部截断误差的一小部分。使用这种方法,用户可以在任意点和时间自由地查看线路电压和电流,而无需在开始仿真之前明确划分线路。

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