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Optimizing Shifting Schedule and Hardware-in-the-Loop Simulation of a Hybrid Vehicle Based on Dual Clutch Transmission

机译:基于双离合器变速器优化混合动力车辆的变速时间表和硬件仿真

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The European Union legislation have introduced regulations on emission reduction for light duty vehicles. Therefore, economy remains a key challenge for automotive engineers. To enable a realistic dual clutch transmission (DCT) system performance evaluation, this paper main objective is development of an IPG Carmaker hybrid vehicle model connected to the testbed with an internal combustion engine by a hardware-in-the-loop (HiL) real time simulation, where the electric powertrain is virtual and it is defined in the application. The specific objective is to develop new shifting schedule of the DCT to optimize the performance of the vehicle. The working principle and dynamic characteristics of the DCT system are first explored. In the second part of the work, the strategy and simulation concern the major part of this work, in order to develop new gear shifting strategy algorithms to evaluate the fuel and electric current consumption over the homologation Worldwide Harmonized Light Vehicles Test Procedure (WLTP) driving cycle. Finally, the simulation results in the HIL environment were evaluated and presented. The constructed model is based on an existing hybrid vehicle. The model was simulated to obtain data regarding the vehicle performance, energy consumption and state of charge on the new WLTP test cycle.
机译:欧洲联盟立法介绍了轻型税率减排规定。因此,经济仍然是汽车工程师的关键挑战。为了使得现实的双离合器传输(DCT)系统性能评估,本文主要目的是通过硬件内燃机(HIL)实时地连接到与内燃机的测试平台连接的IPG车手混合动力汽车模型的开发模拟,电动动力系为虚拟,它在应用中定义。具体目标是开发DCT的新移位计划,以优化车辆的性能。首先探索DCT系统的工作原理和动态特性。在工作的第二部分,策略和模拟涉及这项工作的主要部分,为了开发新的换档策略算法,以评估燃料和电流消耗在全球谐波的轻型车辆测试程序(WLTP)驾驶的情况下循环。最后,评估并呈现了HIL环境的模拟结果。构造的模型基于现有的混合动力车辆。模拟模型以获得关于新WLTP测试周期的车辆性能,能量消耗和充电状态的数据。

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