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Design and Development of a Real-Time Simulation and Testing Platform for a Novel Seamless Two-Speed Transmission for Electric Vehicles

机译:用于电动车辆新型无缝双速传输的实时仿真和测试平台的设计与开发

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摘要

An approach for building a real-time simulation and testing platform for a novel seamless two-speed automated manual transmission (AMT) for electric vehicles (EVs) is proposed and experimentally evaluated. First, the structure of the AMT and the dynamic model of an EV powertrain system equipped with the AMT are presented. Then, according to the testing requirements, a prototype of the AMT, hardware components and software system of the platform are designed. Unlike a real-time transmission test bench, of which the real-time simulation and control system (RSCS) is built based on a dedicated simulator, the RSCS of the platform is built based on a standard desktop personal computer (PC) by using a useful and low-cost solution from MATLAB/SIMULINK (R). Additionally, a simulation model of EV, which is equipped with the AMT and is more suitable for hardware-in-the-loop (HIL) simulation, has been developed. In particular, for conducting various dynamic mechanical tests, the platform is combined with induction motors (IMs), which are adopted with direct torque control (DTC) technique to emulate the dynamic driving conditions of the transmission. The designed platform can be used for different test techniques, including rapid simulation, rapid control prototyping, HIL simulation as well as dynamic mechanical tests. The work expands the capability of the platform and makes the test conditions become closer to reality. Simulation and experimental results indicate that the platform responds well to the real-time dynamic requirements, and it is very useful for developing the proposed transmission.
机译:提出了一种用于为电动车辆(EVS)进行新型无缝的两速自动手动传输(AMT)进行实时仿真和测试平台的方法,并进行实验评估。首先,提出了AMT的结构和配备AMT的EV动力总成系统的动态模型。然后,根据测试要求,设计了平台的AMT,硬件组件和软件系统的原型。与实时传输测试台不同,其中基于专用模拟器构建了实时仿真和控制系统(RSC),平台的RSC基于标准桌面个人计算机(PC)通过使用a构建来自MATLAB / SIMULINK(R)的有用和低成本解决方案。另外,已经开发出具有AMT的EV的仿真模型,并且更适合于环路内(HIL)模拟。特别地,对于进行各种动态机械测试,该平台与感应电动机(IMS)相结合,其用直接扭矩控制(DTC)技术采用,以仿真变速器的动态驾驶条件。设计的平台可用于不同的测试技术,包括快速仿真,快速控制原型,HIL仿真以及动态机械测试。该工作扩展了平台的能力,使测试条件变得更接近现实。仿真和实验结果表明,该平台对实时动态要求响应,并且对于开发所提出的传输是非常有用的。

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    Tsinghua Univ State Key Lab Automot Safety &

    Energy Beijing 100084 Peoples R China;

    Tsinghua Univ State Key Lab Automot Safety &

    Energy Beijing 100084 Peoples R China;

    Tsinghua Univ State Key Lab Automot Safety &

    Energy Beijing 100084 Peoples R China;

    Tsinghua Univ State Key Lab Automot Safety &

    Energy Beijing 100084 Peoples R China;

    Tsinghua Univ State Key Lab Automot Safety &

    Energy Beijing 100084 Peoples R China;

    Tsinghua Univ State Key Lab Automot Safety &

    Energy Beijing 100084 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术及设备;
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