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A few discussion on expert system development for electrical power systems-optimization of an inverter-motor of a railway traction chain

机译:关于电力系统专家系统开发的一些讨论-铁路牵引链逆变器电机的优化

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摘要

This paper deals with the automatic design of static converters and electrical machines. Facing the multitude of such devices (converters-machines), the choice of the appropriate converter or machine is a delicate problem. A high level of expertise is required to determine the best structure for the considered application. This choice could be rapidly made if one had a system which incorporates a great knowledge of converters, machines and control methods. Firstly, the authors review the realized studies, then they propose this methodology for a concrete case in order to optimize an inverter-motor of a railway traction chain. Constraints are described in terms of input and output performances (losses, current, ...). These data are analyzed by using design rules and methods which allow the decrease of the manufacture cost of the inverter-motor. Rules and methods are implemented on a workstation by means of an "expert system shell" Smeci . The article proposes several tracks which involve organization, methodology, confirmation and implementation of a tool supporting a method. This process of implementation is the most efficient to fit into a constant process of improvement which is supported by the return on experience and by the evolution of the state of the art.
机译:本文涉及静态转换器和电机的自动设计。面对众多这样的设备(转换器-机器),选择合适的转换器或机器是一个棘手的问题。需要高水平的专业知识才能确定所考虑应用程序的最佳结构。如果有人拥有一个系统,该系统结合了转换器,机器和控制方法的丰富知识,则可以迅速做出这一选择。首先,作者回顾了已实现的研究,然后针对具体案例提出了该方法,以优化铁路牵引链的逆变器-电动机。约束根据输入和输出性能(损耗,电流等)描述。通过使用设计规则和方法来分析这些数据,这些规则和方法可以降低逆变器电动机的制造成本。规则和方法通过“专家系统外壳” Smeci在工作站上实现。本文提出了一些跟踪方法,涉及组织,方法论,确认和实施支持该方法的工具。这种实施过程是最有效的方法,可以适应持续不断的改进过程,而这种改进过程是经验的回报和最新技术的发展所支持的。

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