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VARIABLE STRUCTURE CONTROL SCHEMES FOR HYDRAULIC ACTUATED AUTOMOTIVE COOLING SYSTEMS

机译:液压驱动汽车冷却系统的可变结构控制方案

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Advanced thermal management systems can enormously improve the transient response of internal combustion engines(ICEs). It can also reduce the fuel consumption and tailpipe emissions. By regulating the ICE temperature via maintaining desired temperatures of coolant circulating in the engine cooling system, the thermal transient response of ICE can be improved. Advanced automotive thermal management systems feature computer controlled servo actuators to energize a smart valve, water pump, and radiator fan. When all the electrically controlled actuators function harmoniously, desired thermal conditions can be obtained. In this paper, variable structure control (VSC) schemes are proposed for hydraulic actuated automotive cooling systems. Different types of sliding mode controllers along with a fuzzy logic control (FLC) architecture are implemented and tested for transient temperature tracking. Representative numerical simulations are introduced to demonstrate the functionality of the proposed control schemes in accurately tracking a prescribed temperature profiles.
机译:先进的热管理系统可以极大地改善内燃机(冰)的瞬态响应。它还可以降低燃料消耗和尾管排放。通过在发动机冷却系统中保持所需的冷却剂的所需温度来调节冰温度,可以提高冰的热瞬态响应。先进的汽车热管理系统具有计算机控制伺服执行器,可激励智能阀门,水泵和散热器风扇。当所有电控执行器函数和谐地时,可以获得所需的热条件。本文提出了用于液压驱动汽车冷却系统的可变结构控制(VSC)方案。不同类型的滑模控制器以及模糊逻辑控制(FLC)架构的实现和测试瞬态温度跟踪。引入代表性的数值模拟以说明所提出的控制方案的功能,准确地跟踪规定的温度谱。

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