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Implementation of Series-Parallel Multiple-Regime Vehicle Architecture Using 2013 Chevrolet Malibu Platform

机译:使用2013 Chevrolet Malibu平台实现串行并行多政权车辆架构

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The focus of this paper is the process of implementation and integration of a series-parallel multiple-regime plugin hybrid electric vehicle (PHEV) using a 2013 Chevrolet Malibu as a platform. The University of Victoria EcoCAR team used a 3-year vehicle development process (VDP) modeled after those used by major automotive manufacturers, and maintained by the rules of EcoCAR 2: Plugging into the Future. Intensive research and simulation resulted in selection of UVic's series-parallel multiple regime vehicle architecture during year 1 of the EcoCAR2 competition. Detailed mechanical design refinement has been conducted to allow final fabrication and integration of components. This has included detailed structural analysis and comparison with the stock vehicle, dynamic analysis of vehicle suspension changes, and manufacturability and serviceability improvements to the year 1 vehicle design. Simulation and modeling work to improve the realism of the vehicle simulation for the purposes of control system development was also conducted. Control system development has been focused around moving vehicle control strategies into a more realistic state, including component diagnostics and mitigating strategies resulting from DFMEA (Design Failure Mode Effects Analysis) work results.
机译:本文的重点是使用2013 Chevrolet Malibu作为平台实现和集成串行并行多政权插件混合动力电动车(PHEV)的过程。维多利亚大学Ecocar团队使用了一个3年的车辆开发过程(VDP),这些过程(VDP)建模在主要汽车制造商使用的那些,并由Ecocar 2规则保持:插入未来。密集的研究和仿真导致了EcoCar2竞争年度第1年的UVIC系列并行多政权车辆架构。已经进行了详细的机械设计改进以允许最终制造和集成组件。这包括详细的结构分析和与股票车辆的比较,车辆悬架变化的动态分析,以及对1年的车辆设计的可制造性和维修性改进。还进行了仿真和建模工作,以改善车辆仿真的现实主义,为控制系统开发的目的。控制系统开发一直集中在将车辆控制策略转移到更现实的状态,包括由DFMEA(设计故障模式效应分析)工作结果产生的组件诊断和减轻策略。

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