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Hierarchical control strategy for a hybrid hydro-mechanical transmission (HMT) power-train

机译:混合液压机械传动(HMT)动力总成的分层控制策略

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A hydraulic hybrid passenger vehicle using a Hydro-mechanical Transmission (HMT) or power-split architecture is being developed as a testbed within the Center for Compact and Efficient Fluid Power. In this paper, the design and experimental implementation of a three-level hierarchical control approach for this vehicle with a second generation hardware are presented. This control strategy segregates the tasks of the drive-train into three layers that respectively 1) manages the accumulator energy storage (high level); 2) performs vehicle level optimization (mid-level); and 3) attains the desired vehicle operating condition (low level). Different high level energy management strategies can be employed without affecting the mid and low level controllers. Two “high level” energy management strategies have been implemented and experimentally tested initially, a continuously variable transmission (CVT) strategy used as a baseline for comparison, and a rule based hybrid strategy. Results illustrate that the mid and low level power-train control satisfy the driver's demand and the efficiency is dependent on the energy management used.
机译:正在开发一种使用液压机械变速箱(HMT)或动力分配架构的液压混合动力乘用车,作为紧凑高效流体动力中心的试验台。在本文中,提出了具有第二代硬件的该车辆的三级分级控制方法的设计和实验实现。这种控制策略将传动系统的任务分为三层,分别是1)管理蓄电池的能量存储(高级别); 2)进行车辆级别优化(中级); 3)达到所需的车辆工况(低水平)。可以采用不同的高级能量管理策略,而不会影响中低级控制器。两种“高级”能源管理策略已得到实施,并在最初进行了实验测试,无级变速(CVT)策略用作比较的基准,以及基于规则的混合策略。结果表明,中低档动力总成控制可以满足驾驶员的需求,而效率则取决于所使用的能量管理。

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