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FUEL EFFICIENCY COMPARISON BETWEEN A CONVENTIONAL AND A HYBRID VEHICLE USING A MODEL BASED ON MATLAB/SIMULINK AND ADAMS

机译:使用基于Matlab / Simulink和Adams的模型的传统和混合动力车辆之间的燃料效率比较

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摘要

Recent development of hybrid vehicles in the automotive industry has demonstrated the capability of reducing fuel consumption while maintaining vehicle performance. The purpose of this paper is to present a hybrid vehicle model created in MATLAB and ADAMS, and its fuel economy improvement over a conventional vehicle system. The hybrid vehicle model discussed in this paper utilizes the Honda IMA (Integrated Motor Assist) architecture. The powertrain components' power output calculation and the control logic were modeled in MATLAB/Simulink, while the mechanical inertial components were modeled in ADAMS. Communication between MATLAB and ADAMS was established by ADAMS/ Controls. The vehicle model created using MATLAB and ADAMS provides a more accurate, more realistic, and a highly flexible simulation platform. In order to evaluate the accuracy of the MATLAB/ADAMS hybrid vehicle model, simulation results were compared to the published data of ADVISOR. Fuel economy of hybrid and conventional vehicle models were compared using the EPA New York City Cycle (NYCC) and the Highway Fuel Economy Cycle (HWFET). The hybrid vehicle demonstrated 8.9% and 14.3% fuel economy improvement over the conventional vehicle model for the NYCC and HWFET drive cycles, respectively. The MATLAB/ADAMS vehicle model presented in this paper, demonstrated the fuel economy advantage of the hybrid vehicle over the conventional vehicle model, while offering a simulation platform that is modular, flexible, and can be conveniently modified to create different types of vehicle models.
机译:汽车工业中混合动力车辆的最新发展已经证明了在保持车辆性能的同时降低燃料消耗的能力。本文的目的是介绍在Matlab和Adams中创建的混合动力车型车型,以及传统车辆系统的燃料经济性改进。本文讨论的混合动力车型车辆模型利用本田IMA(集成电机辅助)架构。动力总成组件的电源输出计算和控制逻辑在MATLAB / SIMULINK中建模,而机械惯性组件在ADAM中建模。 Matlab和Adams之间的通信由Adams / Control建立。使用MATLAB和ADAM创建的车辆模型提供更准确,更逼真,仿真平台。为了评估MATLAB / ADAMS混合动力汽车模型的准确性,将仿真结果与顾问的已发布数据进行比较。使用EPA纽约市循环(NYCC)和公路燃料经济周期(HWFET)进行混合动力和传统车辆模型的燃料经济性。混合动力车厂分别对NYCC和HWFET驱动循环的传统车辆模型分别显示出8.9%和14.3%的燃料经济性改进。本文提出的MATLAB / ADAMS车辆模型展示了混合动力车辆上传统车型的燃料经济性优势,同时提供模块化,灵活的仿真平台,可以方便地修改以创建不同类型的车型。

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