Simulation of Induction Traction Drive with Supercapacitor Energy Storage System Test Bench

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Electrical Control and Communication Engineering Pub Date : 2015-12-01 DOI:10.1515/ecce-2015-0007
Ģ. Staņa, V. Brazis, P. Apse-Apsitis
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引用次数: 4

Abstract

Abstract The paper describes the application of supercapacitor energy storage system for induction traction drive test bench that replaces a real electric public transport for performing testing and researches. The suitability and usage of such bench for research purposes is explained and the importance of the development of software mathematical model for performing simulations to be done before physical implementation measures is reasoned. The working principle of the bench and applied components are described. A virtual model of the bench was built and simulations were performed using Matlab/Simulink software. The basic topology of the virtual bench model is described as well. The calculations of this work show the scaling of supercapacitor energy storage system by setting different limits of working voltage range in order to adjust them to test bench parameters, whereas the modelling compares two simulation cases – the application of less supercapacitors and the application of more supercapacitors with the same common rated voltage. The autonomous mode simulations were also performed. Simulation results are analyzed and recommendations for the application of the supercapacitor energy storage system, with respect to initial supercapacitor circuit voltage, are given.
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基于超级电容储能系统试验台的感应牵引驱动仿真
摘要:本文介绍了将超级电容储能系统应用于感应牵引驱动试验台,替代真实的电动公共交通工具进行测试和研究。说明了该实验台的适用性和研究用途,并说明了开发软件数学模型的重要性,以便在物理实施措施之前进行仿真。介绍了实验台的工作原理及应用部件。建立了实验台的虚拟模型,并利用Matlab/Simulink软件进行了仿真。并对虚拟工作台模型的基本拓扑结构进行了描述。本工作的计算显示了通过设置不同的工作电压范围限制来调整超级电容器储能系统以适应试验台参数的扩展,而建模则比较了在相同公共额定电压下使用较少超级电容器和使用较多超级电容器两种仿真情况。并进行了自主模式仿真。对仿真结果进行了分析,并对超级电容储能系统的初始电路电压给出了应用建议。
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来源期刊
Electrical Control and Communication Engineering
Electrical Control and Communication Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
14.30%
发文量
0
审稿时长
12 weeks
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