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EMR-based Switched Model of DC Railway Systems Supplied by Reversible Traction Power Substations and Regenerative Trains

机译:可逆牵引力变电站和再生列车提供的直流铁路系统的基于EMR的转换模型

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Simulation tools are essential for designing and sizing the infrastructure and operation of electrical railway systems. With the advent of innovative solutions to save energy, the accuracy of estimates of energy consumptions and voltages must be increased, while keeping fast computing capabilities. Due to the numerous non-linearities of this kind of system, complex iterative solvers are often used. However, a new simulation technique based on switched models for the different subsystems has recently been developed for conventional DC traction systems with non-reversible traction power substations (TPS). This technique avoids the use of complex numerical solvers. This paper extends this simulation approach to include reversible TPS using Energetic Macroscopic Representation (EMR). Simulations are carried out and an energy saving of 7 % on the total energy consumption is allowed by the reversible TPS for the studied case.
机译:仿真工具对于设计和施展电气铁路系统的基础设施和操作至关重要。随着创新解决方案的出现来节省能源,必须增加能耗和电压估计的准确性,同时保持快速计算能力。由于这种系统的许多非线性,通常使用复杂的迭代溶剂。然而,最近基于不同子系统的交换模型的新仿真技术,用于具有不可逆转的牵引力变电站(TPS)的传统直流牵引系统。该技术避免了使用复杂的数值求解器。本文扩展了这种模拟方法,包括使用能量宏观表示(EMR)的可逆TPS。进行仿真,可通过可逆TPS为所研究的情况进行施加7%的节能。

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