Use of Stochastic Models for Operational Efficiency Analysis of Multi Power Source Traction Drives

I. Bolvashenkov, H. Herzog
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引用次数: 26

Abstract

Modern development of new technologies, equipment and materials in the field of electric power engineering has allowed a fresh look at the problem of increasing economic efficiency, environmental performance and reliability of electric propulsion for different types of the vehicle drive trains. Considering the higher requirements regarding reliability and fault tolerance, efficiency, ecological parameters and limitations on the installation space and weight of the all traction equipment, the correct choice of type and design features of the electric propulsion drive is extremely important carry out on the basis of a system approach. This paper describes the experience of using stochastic models to assess the operational efficiency of the vehicle electric propulsion systems, consisting of a few generating elements, and one or more traction motors. This type of propulsion system is typical for the icebreakers, arctic cargo ships, diesel-electric locomotives, hybrid cars and aircraft. The deterministic approach does not allow evaluate probabilistic character of operational processes, such as energy output of thermal engines, operational fuel consumption, load modes of traction electric motors, as well as a large number of random factors affecting the accuracy of the simulation results.
基于随机模型的多动力牵引传动运行效率分析
电力工程领域的新技术、新设备和新材料的现代发展,使人们对提高不同类型车辆传动系电力推进的经济效率、环境性能和可靠性的问题有了新的认识。考虑到对所有牵引设备的可靠性和容错性、效率、生态参数的更高要求以及对安装空间和重量的限制,在系统方法的基础上正确选择电力推进传动的类型和设计特点是极其重要的。本文介绍了用随机模型来评估由几个发电元件和一个或多个牵引电动机组成的车辆电力推进系统的运行效率的经验。这种类型的推进系统是典型的破冰船,北极货船,柴油电力机车,混合动力汽车和飞机。确定性方法不允许评估运行过程的概率特征,例如热机的能量输出、运行燃料消耗、牵引电动机的负载模式以及影响仿真结果准确性的大量随机因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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