轻轨牵引系统的自适应变换器

Paulo Mendonça, D. Sousa
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引用次数: 3

摘要

在过去的几十年里,有轨电车系统在世界各地的许多城市重新出现和使用。电车线路的出现与电动交通政策和新技术的发展是分不开的。在其他特点中,可以在轻轨基础设施上行驶的有轨电车,以及重型铁路基础设施已在许多欧洲城市采用。开发这类解决方案时的一个核心挑战是使兼容的基础设施在不同频率和电压水平下运行,例如,开发能够在标准电压下运行的有轨电车(符合EN50163/IEC60850),例如,城市地区750 VDC或15 kV 162/3Hz铁路线。考虑到重载和轻轨运行的标准电压水平,本文的主要目的是描述一种基于模块化级的自适应变换器。该转换器还包括中间能量存储(电池和超级电容器),并考虑到6个牵引电机系统的设计。为了分析所提出的变换器的行为和可行性,基于符合此类电气系统动力学的模型,开发了整个系统的仿真模型。结果表明,基于模块化解决方案,在不同进料条件下运行有轨电车是可能的。
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Adaptive Converter for Light Rail Traction Systems
During the last couple of decades the Tram systems have been reappearing and reused in many cities all over the world. The new advent of tram lines cannot be separated from the electric mobility policies and the new technological developments. Among other features, trams that can ride on light rail infrastructures, as well as, heavy rail infrastructures have been adopted in many European cities. A core challenge when developing this type of solutions is to make compatible infrastructures running at different frequencies and voltage levels, as for instance, to develop trams able to operate at standard voltages (in line with EN50163/IEC60850), as for instance, 750 VDC in an urban area or 15 kV 162/3Hz in rail lines. Considering standard voltage levels for heavy and light rail operation, the main purpose of this paper is to describe an adaptive converter based on modular stages. This converter also includes intermediate energy storage (batteries and ultracapacitors) and is designed considering a system with 6 traction motors. To analyze the behavior and viability of the proposed converter, a simulation model of the entire system is developed based on models in line with the dynamics of such electrical systems. The results obtained show that is possible to operate a tram under different feeding conditions based on a modular solution.
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