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首页> 外文期刊>SAE International Journal of Passenger Cars - Electronic and Electrical Systems >An Engine Thermal Management System Design for Military Ground Vehicle - Simultaneous Fan, Pump and Valve Control
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An Engine Thermal Management System Design for Military Ground Vehicle - Simultaneous Fan, Pump and Valve Control

机译:军用地面车辆发动机热管理系统设计-风扇,泵和气门同时控制

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摘要

The pursuit of greater fuel economy in internal combustion engines requires the optimization of all subsystems including thermal management. The reduction of cooling power required by the electromechanical coolant pump, radiator fan(s), and thermal valve demands real time control strategies. To maintain the engine temperature within prescribed limits for different operating conditions, the continual estimation of the heat removal needs and the synergistic operation of the cooling system components must be accomplished. The reductions in thermal management power consumption can be achieved by avoiding unnecessary overcooling efforts which are often accommodated by extreme thermostat valve positions. In this paper, an optimal nonlinear controller for a military M-ATV engine cooling system will be presented. The prescribed engine coolant temperature will be tracked while minimizing the pump, fan(s), and valve power usage. A case study investigates the proposed control strategy's performance in comparison to other methods for temperature tracking and energy conservation. The optimal nonlinear controller offered satisfactory coolant temperature tracking with an average error of 0.35℃ and at least 13% reduction in total cooling power.
机译:在内燃机中追求更高的燃油经济性要求对包括热管理在内的所有子系统进行优化。机电冷却液泵,散热器风扇和热力阀所需的冷却功率的降低要求实时控制策略。为了将发动机温度保持在针对不同工况的规定极限内,必须不断评估散热需求和冷却系统组件的协同运行。可以通过避免不必要的过冷工作来实现热管理功耗的降低,而这种过冷工作通常由极端的恒温阀位置来解决。在本文中,将提出一种用于军事M-ATV发动机冷却系统的最优非线性控制器。在最小化泵,风扇和阀门功率使用的同时,将跟踪规定的发动机冷却液温度。案例研究调查了与其他温度跟踪和节能方法相比,所提出的控制策略的性能。最佳的非线性控制器可提供令人满意的冷却液温度跟踪,平均误差为0.35℃,总冷却功率至少降低13%。

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