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Method to Include Lumped Devices in Multi-conductor Transmission Line System Models

机译:包括多导体传输线系统模型中的集总装置的方法

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TRANSIENT analysis and crosstalk in multiconductor transmission line (MTL) systems with internal and external losses has been widely studied by solving telegrapher's equation using the finite difference time domain (FDTD) method. Most of those studies are carried out with lumped loads/devices connected at the line terminations (at source and load ends). However, in practical systems such as typical railway and power systems, lumped devices, like, transformers, rotary converter stations, line interconnections and insulators, substation and switchgear equipments (grounding systems, insulators, surge protectors, circuit breakers, etc.) and signaling equipments exist either in series or in shunt with the MTL systems, but not necessarily at the ends. Detailed/complex circuit models (linear or nonlinear) for all those devices either exist in the literature or can be developed from experiments. In this paper a more general method based on Kirchoff's current law (nodal analysis) is proposed to interface the FDTD code with Alternative Transients Program/Electromagnetic Transients Program (ATP/EMTP) circuit simulation software for transient analysis with any complex circuit model along the MTL system. The method is efficient and simple and it could be beneficial for accurate and realistic transient protection, mitigation and insulation coordination studies in large distributed electrical systems. A case study is made for an electrified railway with booster transformer traction system.
机译:通过使用有限差分时域(FDTD)方法求解Telegrapher的方程,广泛研究了具有内部和外部损耗的多导体传输线(MTL)系统中的瞬态分析和串扰。这些研究中的大多数都是通过连接在线终端(在源和负载端)连接的集成负载/装置进行的。但是,在典型的铁路和电力系统,集总装置,诸如变压器,旋转转换器站,线互连和绝缘子,变电站和开关设备(接地系统,绝缘子,电涌保护器,断路器等)和信号传导设备串联或用MTL系统分流,但不一定在末端。所有这些设备的详细/复杂电路模型(线性或非线性)要么存在于文献中,也可以从实验中开发。在本文中,提出了一种基于Kirchoff的当前定律(节点分析)的方法,以将FDTD码与替代瞬态程序/电磁瞬变程序(ATP / EMTP)电路仿真软件接口,用于沿MTL的任何复杂电路模型进行瞬态分析系统。该方法有效且简单,可以有利于大型分布式电气系统中的准确和现实的瞬态保护,减缓和绝缘协调研究。采用增压变压器牵引系统的电气化铁路制造案例研究。

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