Analytical study on electromechanical wave propagation in a non-uniform continuum power system

Delin Wang, Xiaoru Wang
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引用次数: 4

Abstract

According to the differential equations set of describing electromechanical wave propagation in a general lossless non-uniform continuum, firstly, while both the per unit length susceptance and the rotor's inertia of non-uniform continuum change in the form of power functions of spatial coordinate, this paper obtains the Lommel equation about electromechanical wave propagation, presents the exact solutions expressed by Bessel functions. Then the characteristic impedance and the wave speed expressions of electromechanical wave propagation are also derived in the non-uniform condition. Secondly, the WKBJ approximate analytical solutions are studied while the per unit length susceptance and the rotor's inertia of the non-uniform continuum are slow-variation functions of spatial coordinate. Finally, based on an example with typical parameters, the result of electromechanical wave propagation in a non-uniform continuum power system validate the rationality and correctness of the conclusions presented in this paper.
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非均匀连续体电力系统中机电波传播的解析研究
根据描述机电波在一般无损非均匀连续介质中传播的微分方程组,首先,在非均匀连续介质中单位长度电纳和转子惯量都以空间坐标幂函数的形式变化时,得到机电波传播的Lommel方程,并给出用贝塞尔函数表示的精确解。推导了非均匀条件下机电波传播的特性阻抗和波速表达式。其次,研究了非均匀连续体的单位长度电纳和转子惯量为空间坐标慢变函数的WKBJ近似解析解;最后,通过一个具有典型参数的算例,对非均匀连续体电力系统中机电波的传播进行了仿真,验证了本文结论的合理性和正确性。
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