基于小波变换的新型超级电容器-电池混合动力分挡动力系统能量功率解耦策略

S. Dusmez, A. Khaligh
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引用次数: 14

摘要

高性能汽车的电气化带来了一些挑战,例如需要高功率电源,以满足加速时的功率需求,并在减速时有效地回收能量,而不会使这些电源的性能和生命周期下降。此外,这些车辆引擎盖下的有限空间消除了利用大容量大功率推进机器的可能性。本文提出了一种有效的基于小波变换的能量/功率解耦策略,该策略在一种独特的基于功率分流齿轮(PSG)的动力总成上实现,该动力总成部署了两台推进机器和混合动力电池/超级电容器(UC)储能系统(ESS),以克服与电气化性能车辆相关的限制。所提出的控制和管理策略保证了电池提供基础无暂态电源,而暂态由超级电容器补偿。采用混合动力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,延长电池寿命。
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Wavelet-transform based energy and power decoupling strategy for a novel ultracapacitor-battery hybrid power-split gear powertrain
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 lifecycle deterioration of such sources. In addition, the limited space under the hood for these vehicles exterminates the possibility of utilizing large volume high-power propulsion machines. This manuscript proposes an efficient wavelet-transform based energy/power decoupling strategy implemented on a unique power-split gear (PSG) based powertrain deploying two propulsion machines with a hybrid battery/ultra-capacitor (UC) energy storage system (ESS) to overcome the limitations associated with electrified performance vehicles. The proposed control and management strategy guarantees that battery provides the base, transient-free power while transients are compensated by ultra-capacitor. 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.
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