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Modeling for Control and Optimal Design of a Power Steering Pump and an Air Conditioning Compressor Used in Heavy Duty Trucks

机译:电动转向泵控制和最优设计建模及重型卡车中使用的空调压缩机

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The hybridization and electrification of powertrains has brought increased flexibility and, therefore, new challenges, in the design of the hybrid vehicles. Beside the main components that are used for vehicles propulsion, important energy consumers are the auxiliaries such as the power steering pump or others. The influence of these components on the fuel consumption can be defined in terms of the topology, technology and control algorithm choices. This paper presents the influence on fuel consumption of two auxiliaries for two different topologies. For this purpose models are developed for the power steering pump and for the air conditioning compressor, and validated using experimental data from components used in long-haul heavy duty trucks. A case study on the control for the power steering pump is also presented. The results show a significant fuel reduction for each component (for the power steering pump approximately 50% fuel reduction and for the ACC approximately 40% fuel reduction).
机译:在混合动力车辆的设计中,动力传递的杂交和通电带来了增加的灵活性,因此是新的挑战。除了用于车辆推进的主要组件旁边,重要的能源消费者是辅助助剂,如动力转向泵或其他助剂。这些组件对燃料消耗的影响可以在拓扑,技术和控制算法选择方面定义。本文对两种不同拓扑的两种助剂的燃料消耗产生影响。为此目的,开发用于动力转向泵和空调压缩机,并使用远程重型卡车中使用的部件的实验数据进行验证。还介绍了对动力转向泵控制的案例研究。结果显示每个部件的显着燃料减少(对于动力转向泵大约50%的燃油减少和ACC约40%的燃油减少)。

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