用于无轨电车的高频升压交错断续导通模式

F. Gonçalves, C. Canesin, G. Melo, L. de Freitas
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引用次数: 3

摘要

本文介绍了与巴西圣保罗配电公司合作的一个研发项目的成果,该项目开发和实验分析了一种新概念的电力驱动系统,该系统适用于由电动机牵引的电动车辆的牵引系统,可以通过城市直流或交流配电网供电。所提出的前端结构由5个升压动力电池交错连接组成,在不连续导通模式下作为AC-DC变换器或DC-DC变换器工作,以提供直流或交流调速驱动器所需的适当直流输出电压范围。因此,当由单相交流配电网供电时,作为交直流转换器运行,它能够提供高功率因数,减少输入电流中的谐波失真,符合IEC 61000-3-4标准的限制,从而显著提高无轨电车系统的效率和城市配电网的成本。考虑到符合IEC 61000-3-4标准的输入电流限制,对两种数字控制策略进行了评估。该数字控制器采用低成本的FPGA (XC3S200)实现,并采用硬件描述语言VHDL和定点算法进行开发。为了验证该系统的可行性和性能,给出了在直流和交流条件下运行的15 kW小功率样机的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HPF boost interleaved operating in discontinuous conduction mode for trolleybus application
This paper deals with results of a research and development (R&D) project in cooperation with Electric Power Distribution Company in Sa¿o Paulo (Brazil) regarding the development and experimental analysis of a new concept of power drive system suitable for application in traction systems of electrical vehicles pulled by electrical motors, which can be powered by urban DC or AC distribution networks. The proposed front-end structure is composed by five boost power cells in interleaving connection, operating in discontinuous conduction mode as AC-DC converter, or as DC-DC converter, in order to provide the proper DC output voltage range required by DC or AC adjustable speed drivers. Therefore, when supplied by single-phase AC distribution networks, and operating as AC-DC converter, it is capable to provide high power factor, reduced harmonic distortion in the input current, complying with the restrictions imposed by the IEC 61000-3-4 standards resulting in significant improvements for the trolleybuses systems efficiency and for the urban distribution network costs. Considering the compliance with input current restrictions imposed by IEC 61000-3-4 standards, two digital control strategies were evaluated. The digital controller has been implemented using a low cost FPGA (XC3S200) and developed totally using a hardware description language VHDL and fixed point arithmetic. Experimental results from a 15 kW low power scale prototype operating in DC and AC conditions are presented, in order to verify the feasibility and performance of the proposed system.
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