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Conceptual Design and Optimal Torque Sharing Strategy for Hybrid Vehicles with Epicyclic Gear Trains

机译:环状齿轮训练的混合动力车辆概念设计与最优扭矩分担策略

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The paper presents a novel approach in torque sharing between an internal combustion engine (IC engine) and two electrical motors for optimal drive of a hybrid vehicle. The concept of the system is realized by employing the three degrees of freedom (DOF) twin epicyclic gear train with specially selected gear ratios to satisfy an optimal power sharing strategy. The first stage of the train provides high torque from the IC engine and moderate torque from the motor M1. The second stage provides lower torque but higher speed from the motor M2. Such arrangement of power sources is achieved by carefully selecting of all the gear ratios in the train. The designed system is able to minimize the power usage of the IC engine and thus to minimize the exhaust gas emission, save cost of petrol as compared to normal petrol vehicle. It also provides a quite wide range of torque and speed values to drive the vehicle.
机译:本文介绍了内燃机(IC发动机)与两个电动机之间的扭矩共用的新方法,用于最佳驱动混合动力车辆。通过采用具有特殊选择的齿轮比的三个自由度(DOF)双环环绕齿轮系来实现系统的概念,以满足最佳的电力共享策略。火车的第一阶段从IC发动机提供高扭矩,并从电动机M1中等扭矩。第二级提供较低的扭矩,但从电动机M2提供更高的速度。通过仔细选择火车中的所有齿轮比来实现这种电源的布置。设计的系统能够最小化IC发动机的功率使用,从而最小化废气排放,与普通汽油载体相比节省汽油的成本。它还提供了一系列扭矩和速度值以驱动车辆。

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