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Control Strategy and Energy Recovery Potential for P2 Parallel Hybrid Step Gear Automatic Transmissions

机译:P2平行混合步进齿轮自动变速器的控制策略和能量恢复电位

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The purpose of this investigation is to present a control strategy and energy recovery potential for P2 parallel hybrid step gear automatic transmissions. The automatic transmission types considered for the investigation are rear wheel drive 8 speed dual clutch transmission and 8 speed planetary automatic equipped each equipped with an electric motor between the engine and transmission. The governing equations of clutch-to-clutch upshift controls are presented and are identical for each transmission type. Various strategies are explored for executing the upshift under a range of input torques, shift times and engine torque management approaches. The differences in energy recovery potential based upon control strategy is explored piecewise as well as through a DFSS study. On a comprehensive drive cycle consisting of FTP 75, US06 and HWFET test cycles, it is shown that upshift regen torque management can be equivalent to approximately 0.8% of the total fuel energy used. Additionally, it is shown that the utilization of the P2 electric motor is a further enabler to reduced shift times and improved shift quality at part throttle without compromise to net battery energy or fuel consumption.
机译:本研究的目的是为P2并联混合步进齿轮自动变速器提供控制策略和能量恢复电位。考虑调查的自动透射型是后轮驱动8速度双离合器传动和8速行星自动装配在发动机和变速器之间的电动机。呈现离合器到离合器升档控制的控制方程,并且对于每个传输类型是相同的。探索各种策略,用于在一系列输入扭矩,移位时间和发动机扭矩管理方法下执行升档。基于控制策略的能量恢复潜力的差异是探讨分段以及通过DFSS研究。在由FTP 75,US06和HWFET测试循环组成的综合驱动周期上,示出了升档中床扭矩管理可以相当于所使用的总燃料能量的约0.8%。另外,示出了P2电动机的利用是进一步的推动器,以降低换档时间,并且在部分节流器处改善的换档质量而不会折衷于净电池能量或燃料消耗。

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