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Efficient Gear Ratio Selection of a Single-Speed Drivetrain for Improved Electric Vehicle Energy Consumption

机译:高效的齿轮比选择单速传动系统,以改善电动车辆能耗

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The electric vehicle (EV) market has grown over the last few years and even though electric vehicles do not currently possess a high market segment, it is projected that they will do so by 2030. Currently, the electric vehicle industry is looking to resolve the issue of vehicle range, using higher battery capacities and fast charging. Energy consumption is a key issue which heavily effects charging frequency and infrastructure and, therefore, the widespread use of EVs. Although several factors that influence energy consumption of EVs have been identified, a key technology that can make electric vehicles more energy efficient is drivetrain design and development. Based on electric motors’ high torque capabilities, single-speed transmissions are preferred on many light and urban vehicles. In the context of this paper, a prototype electric vehicle is used as a test bed to evaluate energy consumption related to different gear ratio usage on single-speed transmission. For this purpose, real-time data are recorded from experimental road tests and a dynamic model of the vehicle is created and fine-tuned using dedicated software. Dynamic simulations are performed to compare and evaluate different gear ratio set-ups, providing valuable insights into their effect on energy consumption. The correlation of experimental and simulation data is used for the validation of the dynamic model and the evaluation of the results towards the selection of the optimal gear ratio. Based on the aforementioned data, we provide useful information from numerous experimental and simulation results that can be used to evaluate gear ratio effects on electric vehicles’ energy consumption and, at the same time, help to formulate evolving concepts of smart grid and EV integration.
机译:电动车(EV)市场在过去几年中增长,即使电动汽车目前没有高位市场部门,也会预计将在2030年到2030年。目前,电动汽车行业正在寻求解决发出车辆范围,使用更高的电池容量和快速充电。能源消耗是一个关键问题,其重大影响充电频率和基础设施,因此广泛使用了EV。虽然已经确定了影响EVS能量消耗的几个因素,但是一种可以使电动车更能节能的关键技术是动力传动系统的设计和发展。基于电动机的高扭矩能力,在许多光和城市车辆上首选单速传输。在本文的上下文中,原型电动车用作试验台,以评估与单速传输相关的不同齿轮比使用相关的能量消耗。为此目的,从实验道路测试中记录实时数据,并使用专用软件创建和微调车辆的动态模型。进行动态模拟以比较和评估不同的齿轮比例,为其对能量消耗的影响提供有价值的见解。实验和模拟数据的相关性用于动态模型的验证和对选择最佳齿轮比的结果的评估。基于上述数据,我们提供了许多实验和仿真结果的有用信息,可用于评估对电动汽车能耗的齿轮比效应,同时有助于制定智能电网和EV集成的不断变化的概念。

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