首页> 外文会议>The 4th International Conference on Wireless Communications, Networking and Mobile Computing(第四届IEEE无线通信、网络技术及移动计算国际会议)论文集 >A Multi Objective Fuzzy-Based Controller for Front Differential Vehicles by Electrical Traction System on Non-Driven Wheels
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A Multi Objective Fuzzy-Based Controller for Front Differential Vehicles by Electrical Traction System on Non-Driven Wheels

机译:基于非驱动轮电牵引系统的前差速器多目标模糊控制器

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Using electrical machine in conventional vehicles, also called hybrid vehicles, has become a promising control scheme that enables some manners for fuel economy and driver assist for better stability. In this paper, vehicle stability control, fuel economy and Driving/Regeneration braking for a 4WD hybrid vehicle is investigated by using an electrical machine on each non-driven wheels. Fourteen degree of freedom vehicle body modeling and ADVISOR power-train/electrical components model will be used for modeling. Driving/Regeneration and stability enhancement are important in low and high speed respectively. The unequaled independent torques applied to the non-driven wheels provides the ability of vehicle dynamic control to assist the driver with path correction, thus enhancing cornering and straight-line stability and providing enhanced safety. So power managing between engine and electrical machines will be provided the fuel economy and regeneration in braking condition. For these goals, power management and Yaw moment control will be down in low and high speed respectively by proper fuzzy controller. Finally, a series of MATLAB/SIMULINK simulation will carried out to evaluate the performance of the proposed structure.
机译:在常规车辆(也称为混合动力车辆)中使用电机已成为一种有前途的控制方案,该方案可通过某种方式实现燃油经济性和驾驶员辅助,以实现更好的稳定性。在本文中,通过在每个非驱动轮上使用电机来研究4WD混合动力车辆的车辆稳定性控制,燃油经济性和驾驶/再生制动。将使用十四个自由度的车身模型和ADVISOR动力总成/电气组件模型进行建模。驱动/再生和稳定性增强分别在低速和高速下很重要。施加于非驱动车轮的无与伦比的独立扭矩可提供车辆动态控制功能,以协助驾驶员进行路径校正,从而增强转弯和直线稳定性,并增强安全性。因此,发动机和电机之间的动力管理将在制动条件下提供燃油经济性和再生。为了实现这些目标,通过适当的模糊控制器,电源管理和偏航力矩控制将分别在低速和高速下下降。最后,将进行一系列的MATLAB / SIMULINK仿真以评估所提出结构的性能。

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