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Simulation-based analysis of short circuit fault in parallel-series type hybrid electric vehicle

机译:并联系列混合动力汽车短路故障的仿真分析

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There are many papers that propose diagnosis and fault detection in hybrid electric vehicles. However just a few of them concern in short circuit fault. In HEVs battery is one of the most crucial pars and can failure because of the short circuit due to several causes. In this paper, Matlab/Simulink Environment based hybrid powertrain system modeling and simulation for Toy-ota Prius HEV including short circuit case in DC bus system that is developed under SimPowerSystems and Sim- Driveline toolboxes is proposed. This is a multi-domain system which is composed of control system, electric power subsystem, and driving force subsystem. As for the short circuit model, it is developed according to the data collected from investigation report of Prius fire forensics. This hybrid powertrain is of series-parallel type and in order to increase drivetrain efficiency and reduce air pollution, It has two kinds of motive power sources: Internal Combustion Engine and Electric Motor. This system has the advantage of high dynamic performance and low pollution at low speeds coming from internal combustion engine and the ad-vantage of no-pollution and high available power at low speeds coming from electric motor drive. We present the short circuit analysis in DC electric supply system of HEV. The effect of short circuit to the HEV performance is analyzed.
机译:有许多论文在混合动力电动车辆中提出了诊断和故障检测。然而,只有其中一些关注的短路故障。在HEVS中,电池是最重要的PARS之一,由于几个原因导致的短路可能会发生故障。在本文中,提出了基于MATLAB / Simulink环境的混合动力驱动系统建模和用于玩具OTA PRIUS HEV的模拟,包括在SIMPowersystems和SIM-Driveline工具箱下开发的DC总线系统中的短路盒。这是一种多域系统,由控制系统,电力子系统和驱动力子系统组成。至于短路模型,它是根据从普锐斯火取证的调查报告所收集的数据开发的。这种混合动力系列是串行平行型,以提高动力传动效率,减少空气污染,它有两种动力电源:内燃机和电动机。该系统具有高动态性能和低速污染的优势,低速来自内燃机,无污染的广告和高速电力从电动机驱动器的低速。我们在HEV的直流电源系统中提出了短路分析。分析了短路对HEV性能的影响。

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