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Modelling and control of auxiliary loads in heavy vehicles

机译:重型车辆辅助载荷的建模与控制

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摘要

Improved control of the auxiliary units is a possible method to save fuel in heavy vehicles. Today, the auxiliaries are often mechanically driven by the engine, and are constrained to rotate with a fixed ratio to the engine speed. This mechanical constraint results in energy losses. In the paper, the benefits of driving the auxiliaries with electricity are evaluated. The output of an electrically driven auxiliary can at every time instant be controlled to match the actual need. Considered auxiliaries are electrical generator, water pump, cooling fan, air compressor, air conditioning compressor, oil pump and power steering pump. Upper limits on what fuel saving that can be achieved if the auxiliaries are redesigned are first discussed. Simulations indicate that the fuel consumption caused by the auxiliary units is in the range of 5-7% of the total consumption. A Modelica library used for simulation of the energy consumption of the auxiliary units is presented. The cooling system of the library is described in some detail. A case study on optimal control of the cooling system is then performed. Control actuators are the electrical generator, the cooling fan and the water pump. The fan and the pump are supposed to be electrically driven. The control design is based on a simplified model derived from physical principles. It is evaluated through simulations with external variables collected from experiments. The results show that significant energy savings can be obtained.
机译:辅助单元的改进控制是节省重型车辆燃油的一种可能方法。如今,辅助设备通常由发动机机械驱动,并被限制以与发动机转速成固定比例旋转。这种机械约束导致能量损失。在本文中,评估了用电驱动辅助设备的好处。可以随时控制电动辅助设备的输出以匹配实际需求。辅助设备包括发电机,水泵,冷却风扇,空气压缩机,空调压缩机,机油泵和转向助力泵。首先讨论了如果重新设计辅助设备可以节省多少燃料。仿真表明,由辅助单元引起的燃料消耗在总消耗的5-7%范围内。提出了用于仿真辅助单元能耗的Modelica库。对库的冷却系统进行了详细说明。然后进行冷却系统最佳控制的案例研究。控制执行器是发电机,冷却风扇和水泵。风扇和泵应该是电动的。控制设计基于源自物理原理的简化模型。通过使用从实验中收集的外部变量进行仿真来评估它。结果表明,可以节省大量能源。

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