AT供电系统潮流计算软件设计

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引用次数: 0

摘要

高速客运铁路,简称“高铁”,是当今社会一种非常重要的交通运输方式,引起了社会的广泛关注,受到国内外铁路行业研究者的广泛研究。然而,高速铁路的运输能力和运输条件与机车类型、牵引供电系统和交通信息控制密切相关。其中,牵引供电系统是机车能量的重要来源,保证了机车的正常运行,因此具有非常重要的研究意义。本文首先介绍了目前高速铁路采用的AT供电方式。然后推导出潮流计算的方法和原理,为下面软件的设计做铺垫。最后总结了一套完整的潮流计算方法,并在Visual Studio平台上使用c#语言实现。建立了AT供电系统潮流计算软件,输入电压、电流等参数,采用牛顿-拉夫森法进行迭代计算,最终结果可以直接在软件中显示,也可以用Excel导出保存。并且经过测试,软件运行良好,且计算速度较快,结果正常,在误差范围内,基本满足预期要求。
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Design of Software for Calculating Tidal Currents in AT Power Supply Systems
High-speed passenger railway, referred to as "high-speed rail", is a very important mode of transportation in today's society, which have attracted social attention and have been widely studied by domestic and foreign railway industry researchers. However, the transportation capacity and transportation conditions of high-speed railways are closely related to locomotive types, traction power supply systems, and traffic information control. Among them, the traction power supply system is an important source of its energy, which ensures the normal operation of the locomotive, so it has very important research significance. This article first introduces the AT power supply mode used in today's high-speed railways. Then the power flow calculation method and principle are derived as the design of the software below will pave the way. At the end, a complete power flow calculation method is summarized and implemented on the Visual Studio platform using C# language. A power flow calculation software for the AT power supply system was established, inputting parameters such as voltage and current, using Newton-Raphson method to iteratively calculate, and the final result can be directly displayed in the software, or exported and saved with Excel. And after the test, the software can run well, and the calculation speed is relatively fast, the result is normal, within the error range, and basically meets the expected requirements.
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