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SELECTION OF VEHICLE ARCHITECTURE FOR ECOCAR COMPETITION USING AXIOMATICDESIGN PRINCIPLES

机译:使用公理 r n设计原则为生态车竞赛选择车辆架构

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Axiomatic design (AD) techniques have not previously been applied in designing the overall architecture of an automobile. The present work investigates use of axiomatic design concepts for vehicle design in the Texas Tech University Eco-CAR program. The three different architectures considered are fuel cell, two-mode hybrid, and belt alternator/starter system (BAS+). The objective in using axiomatic design methods is to choose an architecture for the EcoCAR competition vehicle that follows the principles of axiomatic design, and in turn, should prove to be the best choice of vehicle architecture among the three considered. Function means trees (FMT) and design matrices (DM) are constructed for each of the architectures and are used in deciding whether the architecture is a coupled, uncoupled, or decoupled design per the independence axiom. The choice is supported by means of simulation results obtained for each architecture. Finally, a two-mode hybrid architecture is selected based on the use of axiomatic design and the simulation results.
机译:公理设计(AD)技术以前尚未应用于设计汽车的整体结构。本工作调查了德州理工大学Eco-CAR计划中公理化设计概念在车辆设计中的使用。所考虑的三种不同架构是燃料电池,两模式混合动力和皮带式交流发电机/起动器系统(BAS +)。使用公理化设计方法的目的是为EcoCAR竞赛车选择一种遵循公理化设计原理的体系结构,从而应被证明是考虑的三者中最佳的汽车体系结构选择。函数意味着为每种体系结构构建树(FMT)和设计矩阵(DM),并用于根据独立性公理确定体系结构是耦合设计,非耦合设计还是解耦设计。通过为每种架构获得的仿真结果来支持该选择。最后,根据公理化设计和仿真结果选择了两种模式的混合架构。

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