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Dual Loop Speed Tracking Control for Torque Management of Gasoline Engines

机译:汽油机扭矩管理的双环速度跟踪控制

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The increasing complexity of the engine control systems and its integration with vehicle dynamics control has led to torque-based management of internal combustion engines. The engine speed depends on the torque demand and load torque acting on the engine. In this research work, a dual loop control strategy is proposed to track the desired speed profile for engine torque management. The air control loop has throttle angle as the control variable, whereas speed control loop has injected fuel mass flow rate as the control input. Smooth Super-Twisting Algorithm based control methodology is developed for tracking the desired speed profile. The novel First Principle based Engine Model is employed to formulate the control scheme and compute net piston force which gives direct measure of the engine torque. Effectiveness of the proposed control strategy is demonstrated via numerical simulations.
机译:发动机控制系统的日益复杂及其与车辆动力学控制的集成已导致基于扭矩的内燃机管理。发动机转速取决于作用在发动机上的扭矩需求和负载扭矩。在这项研究工作中,提出了一种双回路控制策略来跟踪发动机扭矩管理所需的速度曲线。空气控制回路将节气门角度作为控制变量,而速度控制回路将喷射的燃油质量流量作为控制输入。开发了基于平滑超扭曲算法的控制方法,用于跟踪所需的速度曲线。新颖的基于第一原理的发动机模型被用于制定控制方案并计算净活塞力,该净活塞力可直接测量发动机扭矩。通过数值仿真证明了所提出的控制策略的有效性。

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