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Mild hybrid technique using the automotive air-conditioning system

机译:使用汽车空调系统的轻度混合动力技术

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摘要

Among all the ancillary loads of a vehicle, the air-conditioning system accounts for the majority of fuel consumption, and its performance significantly affects the fuel economy of the vehicle. Topological similarities between the electrical system and the air-conditioning system can be utilized to formulate a new mild hybrid technique in which the compressor is treated as an energy conversion device and the evaporator as an energy storage device. Thus, the free kinetic energy during vehicle deceleration is harvestable by the air-conditioning system, provided that the on-off sequence of the clutch command is synchronized to the occurrence times of deceleration events. Motivated by this conceptualization, we are interested in three problems: first, the way in which the specific energy and the specific power of the evaporator can be measured; second, the types of new feature that the formulated optimization problem has; third, the method that is an appropriate mathematical tool for solving the problem. In order to solve these problems, energy-based models developed for air-conditioning systems with conventional evaporators and storage evaporators using a phase-change material are utilized, because they are physics based and have been validated against experimental data in previous work. A framework similar to that used in the energy management of a hybrid electric vehicle is established, and its unique characteristics are identified. The low-cost method using the air-conditioning system as an energy buffer, which is a very promising mild hybrid technique that has been demonstrated in conventional vehicles, is also applicable to hybrid electric vehicles.
机译:在车辆的所有辅助负载中,空调系统占燃油消耗的大部分,其性能显着影响车辆的燃油经济性。可以利用电气系统和空调系统之间的拓扑相似性来制定一种新的轻度混合动力技术,在这种技术中,压缩机被视为能量转换装置,而蒸发器被视为能量存储装置。因此,只要离合器指令的接通-断开顺序与减速事件的发生时间同步,则空调系统就可以收集车辆减速期间的自由动能。出于这种概念化的考虑,我们对三个问题感兴趣:首先,可以测量蒸发器的比能量和比功率的方式;第二,制定的优化问题具有的新特征的类型;第三,该方法是解决问题的合适数学工具。为了解决这些问题,利用了针对具有传统蒸发器和使用相变材料的存储蒸发器的空调系统开发的基于能量的模型,因为它们是基于物理的,并且已经在先前的工作中针对实验数据进行了验证。建立了类似于混合动力汽车能源管理中使用的框架,并确定了其独特的特性。使用空调系统作为能量缓冲器的低成本方法是一种非常有前途的轻度混合动力技术,已在常规车辆中得到证明,该方法也适用于混合动力电动车辆。

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