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Model Predictive Control of Engine Speed During Vehicle Deceleration

机译:车辆减速时发动机转速的模型预测控制

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We consider the speed control of a spark ignition engine during vehicle deceleration. When the torque converter bypass clutch is open, the engine speed needs to be kept close to the turbine speed to guarantee responsiveness of the vehicle for subsequent accelerations. However, to maintain vehicle drivability, undesired crossing between engine speed and turbine speed must not occur, despite the presence of significant torque disturbances. Hence, the engine speed during vehicle decelerations needs to be precisely controlled by feedback control, which has to coordinate airflow and spark timing and enforce several constraints including engine stall avoidance, combustion stability, and actuator limits. We develop a model predictive controller that manipulates airflow and spark to track the reference signal for engine speed while enforcing constraints, and synthesize it in the form of a feedback law. The controller is evaluated in simulations and in a vehicle, and it is shown to achieve a responsive and consistent deceleration and the potential for reducing fuel consumption.
机译:我们考虑在车辆减速期间火花点火发动机的速度控制。当变矩器旁通离合器打开时,发动机转速需要保持接近涡轮转速,以确保车辆对后续加速的响应能力。但是,为了保持车辆的可驾驶性,尽管存在明显的扭矩干扰,也不得在发动机转速和涡轮转速之间发生不希望的交叉。因此,车辆减速期间的发动机转速需要通过反馈控制进行精确控制,该反馈控制必须协调气流和火花正时,并强制执行一些限制条件,包括避免发动机失速,燃烧稳定性和致动器极限。我们开发了一种模型预测控制器,该模型可操纵气流和火花以在强制执行约束的同时跟踪发动机转速的参考信号,并以反馈定律的形式对其进行合成。在仿真和车辆中对控制器进行了评估,结果表明该控制器可实现响应性一致的减速度,并具有降低燃油消耗的潜力。

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