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Advanced automotive thermal management - Nonlinear radiator fan matrix control

机译:先进的汽车热管理-非线性散热器风扇矩阵控制

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Advanced automotive cooling systems for gasoline and diesel engines can improve the powertrain performance. The replacement of the mechanical driven coolant pump and radiator fans with computer controlled servo-motor actuators, and update of the wax-based thermostat valve with a 3-way variable position smart valve, allow the coolant flow rate and proportion directed through the radiator to be carefully adjusted. A smart thermal management system approach can regulate the forced convection heat transfer process to match the engine's cooling needs. This paper presents a Lyapunov based nonlinear control strategy to solely operate the radiator fan matrix for transient engine temperature tracking. A reduced order mathematical model serves as the basis for the closed-loop feedback system. An adaptive backstepping method was implemented to derive the control law. An experimental test bench with multiple radiator fans, heat exchanger, wind tunnel, coolant pump, three way valve, and engine thermal load has been fabricated. Representative numerical and experimental tests demonstrate that the advanced control strategy can regulate the engine temperature tracking error within 0.12 ℃ and compensate the unknown heat load. The nonlinear controller provided superior performance in terms of power consumption and temperature tracking as evident by the reduced magnitude when compared to a classical PI with lookup table based controller and a bang bang controller.
机译:汽油和柴油发动机的先进汽车冷却系统可以改善动力总成性能。用计算机控制的伺服电机致动器代替机械驱动的冷却剂泵和散热器风扇,并用三通可变位置智能阀更新蜡基恒温阀,从而使冷却剂的流量和比例通过散热器达到仔细调整。智能的热管理系统方法可以调节强制对流换热过程,以匹配发动机的冷却需求。本文提出了一种基于Lyapunov的非线性控制策略,该策略仅运行散热器风扇矩阵即可进行瞬态发动机温度跟踪。降阶数学模型用作闭环反馈系统的基础。实施了一种自适应反推法来推导控制律。已制造出具有多个散热器风扇,热交换器,风洞,冷却液泵,三通阀和发动机热负荷的实验测试台。代表性的数值和实验测试表明,先进的控制策略可以将发动机温度跟踪误差调节在0.12℃以内,并补偿未知的热负荷。与具有基于查找表的控制器和bang-bang控制器的经典PI相比,非线性控制器在功耗和温度跟踪方面提供了卓越的性能,这可以从减小的幅度中看出。

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