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A Fuzzy Logic Global Power Management Strategy for Hybrid Electric Vehicles Based on a Permanent Magnet Electric Variable Transmission

机译:基于永磁电动无级变速器的混合动力汽车模糊逻辑全局电源管理策略

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The major contribution of this paper is to propose a Fuzzy Logic Global Power Management Strategy for Hybrid Electric Vehicles (HEVs) that are driven by the PM-EVT (PM machine—Electric Variable Transmission) powertrain, such that the PM-EVT will have superior advantages over other types of powertrains, including the current Toyota Prius powertrain for series-parallel HEVs. This has been investigated throughout three aspects. The first is the optimum power splitting between the Internal Combustion Engine (ICE) and the PM-EVT. The second is maximizing the vehicle’s energy capture during the braking process. Finally, sustaining the State of Charge (SOC) of the battery is adopted by a robust ON/OFF controller of the ICE. These goals have been accomplished by developing three fuzzy logic (FL) controllers. The FL controllers are designed based on the state of charge of the battery, vehicle’s velocity, traction torque, and the vehicle’s requested power. The integration of the studied system is accomplished via the Energetic Macroscopic Representation (EMR) simulation model strategy based on the software Matlab/Simulink. The PM-EVT based HEV system with the proposed power management strategy is validated by comparing to the Toyota Prius HEV. The vehicle’s performances have been analyzed throughout a combined long-trip driving cycle that represents the normal and the worst operating conditions. The simulation results show that global control system is effective to control the engine’s operating points within the highest efficiency region, exploiting of EVT machines for capturing maximum braking energy, as well as to sustain the SOC of the battery while satisfy the drive ability. The proposed control strategy for the studied HEVs sounds interesting and feasible as supported by a large amount of simulation results.
机译:本文的主要贡献是提出一种由PM-EVT(PM机器-电动变速箱)动力总成驱动的混合电动汽车(HEV)的模糊逻辑全局电源管理策略,从而使PM-EVT具有卓越的相对于其他类型的动力总成,包括当前的丰田普锐斯(Prius)Prius动力总成,适用于串并联混合动力汽车。已经从三个方面对此进行了研究。首先是内燃机(ICE)和PM-EVT之间的最佳功率分配。第二个是在制动过程中最大程度地提高车辆的能量捕获能力。最后,ICE的功能强大的ON / OFF控制器采用维持电池的充电状态(SOC)的方法。通过开发三个模糊逻辑(FL)控制器已经实现了这些目标。 FL控制器的设计基于电池的充电状态,车辆的速度,牵引扭矩和车辆的要求功率。所研究系统的集成是通过基于Matlab / Simulink软件的高能宏观表示(EMR)仿真模型策略完成的。通过与丰田普锐斯HEV进行比较,验证了基于PM-EVT的HEV系统以及所提出的电源管理策略。在代表正常和最差运行状况的整个长途行驶循环中,对车辆的性能进行了分析。仿真结果表明,全局控制系统可有效控制发动机的最高效率区域内的工作点,利用EVT机器捕获最大的制动能量,并在满足驱动能力的同时维持电池的SOC。在大量的仿真结果的支持下,针对所研究的混合动力汽车提出的控制策略听起来既有趣又可行。

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