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Rapid Prototyping Energy Management System for a Single Shaft Parallel Hybrid Electric Vehicle Using Hardware-in-the-Loop Simulation

机译:使用硬件型仿真的单轴平行混合动力电动汽车快速原型设计系统

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Energy management is one of the key challenges for the development of Hybrid Electric Vehicle (HEV) due to its complex powertrain structure. Hardware-In-the-Loop (HIL) simulation provides an open software architecture which enables rapid prototyping HEV energy management system. This paper presents the investigation of the energy management system for a single shaft parallel hybrid electric vehicle using dSPACE eDrive HIL system. The parallel hybrid electric vehicle, energy management system, and low-level Electronic Control Unit (ECU) were modeled using dSPACE Automotive Simulation Models and dSPACE blocksets. Vehicle energy management is achieved by a vehicle-level controller called hybrid ECU, which controls vehicle operation mode and torque distribution among Internal Combustion Engine (ICE) and electric motor. The individual powertrain components such as ICE, electric motor, and transmission are controlled by low-level ECUs. To examine the performance of hybrid ECU and low-level ECUs, vehicle mode control, speed tracking, energy distribution, regenerative braking, and engine operating region were investigated in the HIL environment with a hardware electric motor controller consisting of dSPACE MicroAutoBox II and the AC Motor Control Solution. The presented work illustrates that the HIL system is a suitable environment for the rapid prototyping of HEV control strategies.
机译:能源管理是混合动力电动汽车(HEV)的发展的关键挑战之一,由于其复杂的动力系统结构。硬件在环(HIL)仿真提供了一个开放的软件体系结构使快速原型HEV能量管理系统。本文介绍了能量管理系统的使用电驱动dSPACE的HIL系统中的单个轴并联式混合动力电动车辆的调查。并联混合动力电动车辆,能量管理系统,和低水平的电子控制单元(ECU)使用dSPACE的汽车仿真模型和dSPACE的模块集建模。车辆能量管理是通过所谓的混合动力ECU的车辆级别的控制器,实现该内燃发动机(ICE)和电动机之间的控制的车辆操作模式和转矩分配。各个动力传动系部件如ICE,电动马达,并且传输通过低级别的ECU控制。为了检查混合动力ECU和低水平的ECU,车辆模式控制,速度跟踪,能量分布,再生制动和发动机操作区域的性能在HIL环境进行了研究用由dSPACE的的MicroAutoBox II和AC的硬件电动机控制器电机控制解决方案。所呈现的工作示出了HIL系统是用于HEV的控制策略的快速原型一个合适的环境。

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