智能转换器应用于公共交通车辆辅助转换器

Martin Šuňal, Jaroslav Ilončiak, Jaroslav Bednar
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引用次数: 2

摘要

本文介绍了智能变换器,并给出了实际工业应用的结果。公共交通车辆的辅助变流器是车辆的重要组成部分。辅助变流器由三相、逆变器、单相逆变器、充电器、几种不同电压的电源组成。目前的转换器包含功能强大的数字信号处理器(DSP)和许多外围设备。DSP的高性能为复杂系统提供了新的转换器。转换器的工作原理往往非常相似。基于变流器的相似性,设计并创建了每组变流器通用的、可调的控制程序。通用可调控制程序的创建允许设计和创建智能转换器。智能转换器自动调节。当智能变流器与辅助变流器连接后,自动调节。转换器在没有外部支持(服务人员)的情况下接受正确的设置。之后,转换器准备工作。智能变换器的实现提高了可靠性和可修复性。维修时间更短。对工作人员的要求很低。
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Smart converters implemented into auxiliary converter of public transport vehicles
This paper describes smart converters and presents results from real industrial application. The auxiliary converters in public transport vehicles are very important part of vehicles. The auxiliary converters consist from three-phase, inverters, single-phase inverters, chargers, power supplies of several different voltages. Nowadays converters contain powerful digital signal processors (DSP) with a lot of peripheries. High performance of the DSP predisposes new converters for complex systems. Working principle of converters is often very similar. Based on the similarity of converters were designed and created universal, adjustable control programs for each group of converters. The creation of universal adjustable control programs allowed to design and create smart converters. The smart converters are adjusted automatically. When the smart converters are connected to the auxiliary converters, they are adjusted automatically. The converters accept correct settings without external support (service staff). After that the converters are ready for work. The implementation of the smart converter improves reliability and reparability. Repair time is shorter. Requirements on staff are low.
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