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Fuzzy based controller design for parallel hybrid electric vehicle: An approach to fuel consumption and emission reduction

机译:并联混合动力汽车基于模糊的控制器设计:降低燃油消耗和排放的方法

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Reduction of greenhouse gas emission and fuel consumption as one of the main goals of automotive industry leading to the development hybrid vehicles. The objective of this paper is to investigate the energy management system and control strategies effect on fuel consumption, air pollution and performance of hybrid vehicles in various driving cycles. In this paper a GA-based optimized parallel HEV is considered. And so simulation performed due to Matlab and in the Advisor environment. Also a new fuzzy-based controller designed and so various strategies in different driving cycles investigated with an approach to fuel consumption and emission reduction. The simulation procedure had been carried out as a comparison problem to investigate the partnership for a new generation of vehicles (PNGV) and its effects on performance of the vehicle. The simulation results represent that if the PNGV terms not regarded in the parallel HEV performance simulations, with the proposed controller, fuel consumption and emission amount reduced saliently, however, acceleration and power of gradeability of vehicle reduced too. But with effort to observe the PNGV terms, power of vehicle and its acceleration could be improved. Hence the efficiency of the HEV rised reciprocally.
机译:减少温室气体排放和燃料消耗是导致混合动力汽车发展的汽车工业的主要目标之一。本文的目的是研究能量管理系统和控制策略对不同驾驶循环中混合动力汽车的油耗,空气污染和性能的影响。本文考虑了基于遗传算法的优化并行混合动力汽车。因此,由于使用Matlab和在Advisor环境中进行了仿真。还设计了一种新的基于模糊的控制器,从而研究了不同驾驶循环中的各种策略,并采用了降低燃油消耗和减少排放的方法。作为比较问题,进行了仿真程序,以研究新一代车辆(PNGV)的合作伙伴关系及其对车辆性能的影响。仿真结果表明,如果在并行混合动力汽车性能仿真中不考虑PNGV项,则采用所提出的控制器可以显着降低燃油消耗和排放量,但是,车辆的加速度和坡度功率也将降低。但是通过努力观察PNGV术语,可以提高车辆的动力及其加速度。因此,HEV的效率反而提高了。

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