首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >An optimal torque distribution strategy for an integrated starter-generator parallel hybrid electric vehicle based on fuzzy logic control
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An optimal torque distribution strategy for an integrated starter-generator parallel hybrid electric vehicle based on fuzzy logic control

机译:基于模糊逻辑的起动发电机并联混合动力电动汽车最优转矩分配策略。

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摘要

This paper presents a systemic design method of a multi-energy management control strategy by using fuzzy logic control to realize the optimal torque distribution between the internal combustion engine and electric motor. The controller which is the brain of the hybrid electric vehicle receives vehicle information such as the acceleration and brake pedal, the engine speed, and the absolute state of charge of the battery package as inputs and sends a direct torque command to control the electric motor and the engine throttle angle to command the diesel engine. Fuzzy control logic consists of three parts to realize the interpolation mechanism: the trapezoid membership, the Mamdani rule reference machine, and the centre of gravity as the defuzzification method. A novel technique to fuzzify the vehicle torque demand that can enable a point-to-point optimization is introduced and more than 130 rules are classified into four subrule bases. Hardware-in-the-loop simulation results reveal that the efficiency of the integrated starter-generator hybrid system has been improved greatly and the fuel economy is better than the default rule-based control strategy. [PUBLICATION ABSTRACT]
机译:本文提出了一种通过模糊逻辑控制实现内燃机与电动机之间最优转矩分配的多能源管理控制策略的系统设计方法。作为混合动力电动汽车的大脑的控制器接收车辆信息(例如加速和制动踏板,发动机转速以及电池组的绝对充电状态)作为输入,并发送直接转矩命令来控制电动机和发动机节气门角度控制柴油发动机。模糊控制逻辑由三个部分组成,以实现插值机制:梯形隶属度,Mamdani规则参考机和重心作为反模糊化方法。引入了一种模糊化车辆扭矩需求的新技术,该技术可以实现点对点优化,并且将130多个规则分为四个子规则库。硬件在环仿真结果表明,集成的起动机/发电机混合系统的效率已大大提高,燃油经济性优于默认的基于规则的控制策略。 [出版物摘要]

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