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ADVISOR Simulation and Performance Test of Split Plug-in Hybrid Electric Vehicle Conversion

机译:插电式混合动力电动汽车改装的ADVISOR仿真和性能测试

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摘要

With increasing concern over the environment and ever stringent emissions regulations, the electric vehicle has been investigated as an alternative form of transportation. However, the electric vehicle suffers from relatively short range and long charging times and consequently has not become an acceptable solution to the automotive consumer. The addition of an internal combustion engine to extend the range of the electric vehicle is one method of exploiting the high efficiency and lack of emissions of the electric vehicle while retaining the range and convenient refuelling times of a conventional gasoline powered vehicle. The term that describes this type of vehicle is a hybrid electric vehicle. Many configurations of hybrid electric vehicles have been designed and implemented, namely the series, parallel and power-split configurations. This paper discusses the modelling and simulation of split plug-in hybrid electric vehicles. Modelling methods such as physics-based Resistive Companion Form technique and Bond Graph method are presented with powertrain component and system modelling examples. The modelling and simulation capability of existing tools such as ADvanced VehIcle SimulatOR (ADVISOR) is demonstrated through application examples. Hardware implementation has been done and tested on dyno and real road test. An experimental result has been compared to simulation results. Since power electronics is indispensable in hybrid vehicles, the issue of numerical oscillations in dynamic simulations involving power electronics is briefly addressed.
机译:随着人们对环境的日益关注以及日益严格的排放法规,电动汽车已被研究为一种替代性的运输方式。然而,电动车辆具有相对短的范围和较长的充电时间,因此尚未成为汽车消费者可接受的解决方案。添加内燃发动机以扩大电动车辆的范围是一种在保持传统汽油动力车辆的范围和方便加油时间的同时利用电动车辆的高效率和缺乏排放的方法。描述这种类型的车辆的术语是混合动力电动车辆。已经设计和实现了混合动力电动汽车的许多配置,即串联,并联和动力分配配置。本文讨论了插电式混合动力汽车的建模和仿真。通过动力总成组件和系统建模示例,介绍了诸如基于物理的电阻伴侣形式技术和键合图方法之类的建模方法。通过应用示例演示了现有工具(例如高级车辆仿真器(ADVISOR))的建模和仿真功能。硬件实现已完成,并已在dyno和真实路测中进行了测试。实验结果已经与模拟结果进行了比较。由于电力电子学在混合动力汽车中必不可少,因此简要讨论了涉及电力电子学的动态仿真中的数值振荡问题。

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