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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Parallel hybrid electric system energy optimization control with automated mechanical transmission
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Parallel hybrid electric system energy optimization control with automated mechanical transmission

机译:带有自动机械变速器的并联混合动力系统能量优化控制

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摘要

Energy optimization control for a parallel hybrid electric system with automated mechanical transmission (AMT) can be divided into two steps in this paper. First, the AMT shift is not optimized and the optimal torque distribution strategy is proposed to minimize the powertrain equivalent specific fuel consumption by considering the power conversion efficiency, which distributes the vehicle single torque request into separate torque requests for the internal combustion engine (ICE) and the electric motor (EM). The distribution results are expressed in a table format and can be found from the simple process of looking up the table using the vehicle torque request, the ICE speed, and the battery state of charge (SOC). Then, the AMT shift control is suggested to maximize the powertrain system efficiency and optimizes the speed as the basis for the above-mentioned torque distribution, in which the ICE efficiency, the EM efficiency, and the battery efficiency are all explicitly taken into account. The AMT optimal shift control law and the EM optimal torque are essentially look-up-table-based control according to the ICE power, the EM power, the vehicle velocity, and the battery SOC after offline calculations. Simulation results reveal that potential fuel economy improvement has been achieved by using the energy optimization control. [PUBLICATION ABSTRACT]
机译:本文将具有自动机械变速器(AMT)的并联混合动力系统的能量优化控制分为两个步骤。首先,没有优化AMT换档,并且提出了最佳的扭矩分配策略,以通过考虑动力转换效率来最大程度地降低动力总成的当量比燃料消耗,从而将车辆单个扭矩请求分配给内燃机(ICE)的单独扭矩请求和电动机(EM)。分配结果以表格格式表示,可以从使用车辆扭矩请求,ICE速度和电池充电状态(SOC)查找表格的简单过程中找到。然后,建议采用AMT变速控制以使动力总成系统效率最大化并优化速度,作为上述扭矩分配的基础,其中明确考虑了ICE效率,EM效率和电池效率。在离线计算之后,根据ICE功率,EM功率,车速和电池SOC,AMT最佳变速控制定律和EM最佳扭矩实质上是基于查找表的控制。仿真结果表明,通过使用能源优化控制已实现了潜在的燃油经济性改善。 [出版物摘要]

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