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Modeling air conditioning system with storage evaporator for vehicle energy management

机译:带有存储蒸发器的空调系统建模,用于车辆能源管理

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Automotive Air Conditioning (A/C) system significantly affects fuel consumption and emission. Thus, Phase Change Material (PCM) is exploited in an innovative storage evaporator to improve the A/C system performance. Due to hybrid features introduced by mode switching when PCM changes its status between liquid and solid, the task of control-oriented modeling is particularly challenging. Upon the energy-based model built, an optimal control problem of an advanced A/C system with a storage evaporator is formulated as to find an optimal clutch command sequence balancing fuel consumption, cabin comfort and drivability constraints. In the scope of vehicle energy management, Dynamic Programming (DP) algorithm usually serves as a tool of obtaining benchmark optimal solution, against which results from other optimal algorithms are compared. However, a direct application of DP algorithm to the optimal control problem faces unexpected difficulty, because the discretization of state space is not feasible for an irregular multi-dimensional subspace formed by the multi-mode model. Alternatively, hybrid optimal control theory is pursued and a preliminary study is conducted to illustrate its promising application. (C) 2015 Elsevier Ltd. All rights reserved.
机译:汽车空调(A / C)系统会严重影响燃油消耗和排放。因此,相变材料(PCM)被用于创新的存储蒸发器中,以改善A / C系统的性能。由于当PCM在液态和固态之间改变状态时模式切换引入了混合功能,因此面向控制的建模任务特别具有挑战性。基于建立的基于能量的模型,制定了具有存储蒸发器的先进A / C系统的最优控制问题,以找到平衡油耗,驾驶室舒适性和驾驶性能约束的最佳离合器命令序列。在车辆能量管理的范围内,动态规划(DP)算法通常用作获取基准最优解的工具,然后将其与其他最优算法的结果进行比较。然而,将DP算法直接应用于最优控制问题面临着意想不到的困难,因为状态空间的离散化对于由多模式模型形成的不规则多维子空间是不可行的。或者,采用混合最优控制理论,并进行了初步研究以说明其有希望的应用。 (C)2015 Elsevier Ltd.保留所有权利。

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