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Temperature control of an automotive engine cooling system utilizing a magneto-rheological fan clutch

机译:利用磁流变风扇离合器的汽车发动机冷却系统的温度控制

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In this note, the temperature control of an automotive engine cooling system is undertaken using a magneto-rheological (MR) fluid-based fan clutch (MR fan clutch in short). In order to achieve this goal, an appropriate size of controllable fan clutch using an MR fluid is firstly devised by considering the design parameters of a conventional fan clutch to reflect the practical application. Then, the principal design parameters of the MR fan clutch such as the length of the disc are optimally determined through finite element analysis. The drum-type MR fan clutch is manufactured and its time response to input current is experimentally evaluated. A robust sliding mode controller is then formulated by treating the time constant of the fan clutch system as an uncertain parameter. After identifying the relationship between angular velocity of the MR fan clutch and the temperature of the cooling system, the sliding mode controller is experimentally realized for the cooling system. It has been clearly demonstrated that the proposed sliding mode controller follows well the desired temperature with a small regulating error. It is expected from this feasibility work that the proposed control system associated with an MR fan clutch can be effectively utilized for the automotive cooling system to improve the fuel efficiency.
机译:在本说明中,汽车发动机冷却系统的温度控制是使用基于磁流变(MR)流体的风扇离合器(简称MR风扇离合器)进行的。为了实现该目标,首先通过考虑常规风扇离合器的设计参数以反映实际应用来设计使用MR流体的可控风扇离合器的合适尺寸。然后,通过有限元分析来最佳确定MR风扇离合器的主要设计参数,例如盘的长度。制造鼓型MR风扇离合器,并通过实验评估其对输入电流的时间响应。然后通过将风扇离合器系统的时间常数视为不确定参数来制定鲁棒的滑模控制器。在确定了MR风扇离合器的角速度与冷却系统温度之间的关系之后,通过实验实现了冷却系统的滑模控制器。已经清楚地表明,提出的滑模控制器很好地遵循了期望的温度,并且调节误差很小。从该可行性研究中可以预期,与MR风扇离合器相关的建议控制系统可以有效地用于汽车冷却系统,以提高燃油效率。

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