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Optimal Control Strategies for CVT of the HEV during a regenerative process

机译:再生过程中HEV CVT的最佳控制策略

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This paper presents analyses and estimation of optimal control strategies of the parallel Hybrid Electric Vehicles (HEV) from the perspective of fuel economy and maximum energy regeneration during an active braking process. In the paper, there are four main control strategies of Continuously Variable Transmission (CVT) during a regenerative braking process depicted and discussed in detail. The four strategies are: 1) Control strategy of maximal use of regenerative braking. 2) Control strategy of CVT during to support workload of electrical motor according to maximal efficiency characteristics. 3) Control strategy of the CVT for maximal regenerative of energy of braking process per braking distance unit or braking time unit. 4) Discrete control strategy of the CVT with direct combinatorial applications of genetic algorithms and elements of fuzzy logic in control unit of the HEV. In all depicted control strategies, data of the HEV's drive system components, such as, electric motor, internal combustion engine, energy storage, transmission-CVT, are obtained from database of the software package ADVISOR of National Renewable Energy Laboratory (NREL).
机译:本文从燃料经济性和主动制动过程中的燃料经济性的角度提出了并联混合动力电动车辆(HEV)的最佳控制策略的分析和估计。在本文中,在详细描述和讨论的再生制动过程中,存在连续可变变速器(CVT)的四个主要控制策略。四种策略是:1)控制策略的最大使用再生制动。 2)根据最大效率特性,CVT控制策略支持电动机工作量。 3)CVT的控制策略,用于每个制动距离单元或制动时间单元的制动过程能量的最大再生。 4)CVT的离散控制策略,具有遗传算法的直接组合应用和HEV控制单元的模糊逻辑元素。在所有所描绘的控制策略中,HEV驱动系统组件的数据,例如电动机,内燃机,能量存储,传输-CVT,从国家可再生能源实验室(NRER)的软件包顾问数据库中获得。

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