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A Supervisory Power-Splitting Approach for a New Ultracapacitor–Battery Vehicle Deploying Two Propulsion Machines

机译:一种新型超级电容电池车辆的动力分配方法,该车辆采用两台推进器

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Electrification of performance vehicles brings several challenges, such as the necessity of high-power sources, which can satisfy the power requirements during acceleration and efficiently retrieve energy during deceleration without performance and life cycle deterioration of such sources. In addition, the limited space under the hood for these vehicles eliminates the possibility of utilizing large volume high-power propulsion machines. This paper proposes a fuzzy logic supervisory wavelet-transform frequency decoupling-based energy management strategy implemented on a new powertrain deploying two propulsion machines rated at different powers with a hybrid battery/ultracapacitor (UC) energy storage system (ESS). The proposed control and energy management strategy guarantees that battery and UC provide the base and transient-free powers, respectively, while state of charge (SOC) of UC is maintained at an optimal value. The torque demand is split among the propulsion machines by solving the formulated unconstrained optimization problem. With the proposed hybrid ESS and energy/power decoupling strategy, power density of the ESS can be increased, vehicle performance can be improved, and battery lifetime can be prolonged.
机译:高性能车辆的电气化带来了一些挑战,例如必须使用大功率动力源,这些动力源可以满足加速过程中的动力需求,并在减速过程中有效地回收能量,而这些动力源的性能和寿命周期不会降低。另外,这些车辆的发动机罩下方有限的空间消除了使用大功率大功率推进器的可能性。本文提出了一种基于模糊逻辑监督小波变换频率解耦的能量管理策略,该策略在新的动力总成上实现,该动力总成部署了两台额定功率不同的推进器,并带有混合电池/超级电容器(UC)储能系统(ESS)。所提出的控制和能量管理策略可确保电池和UC分别提供基本功率和无瞬态功率,同时UC的充电状态(SOC)保持在最佳值。通过解决公式化的无约束优化问题,将扭矩需求分配给推进机。通过提出的混合动力ESS和能量/功率解耦策略,可以提高ESS的功率密度,改善车辆性能,并延长电池寿命。

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