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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Robust Discrete-Time MRAC With Minimal Controller Synthesis of an Electronic Throttle Body
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Robust Discrete-Time MRAC With Minimal Controller Synthesis of an Electronic Throttle Body

机译:稳定的离散时间MRAC,电子节气门体的最少控制器合成

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摘要

The electronic throttle body (ETB) is a fundamental actuator for regulating the air mass coming into an internal combustion engine; hence, it is used to control the engine torque in any modern drive-by-wire configuration. To cope with the nonlinear and discontinuous dynamics of this automotive device, in this paper a novel discrete-time model reference adaptive control (MRAC) method is designed and experimentally tested on an ETB installed on a 2-L engine. The control strategy extends the class of the minimal control synthesis (MCS) algorithms for discrete-time systems by adding an explicit discrete-time adaptive integral action and an adaptive robust term. An in-depth experimental investigation shows that the proposed control method is a viable solution as it is robust with respect to nonlinear torques acting on the plant, and it guarantees better performance than those provided by other MRAC strategies especially for small reference signals around the limp-home position where plant nonlinearities strongly affect the ETB dynamics.
机译:电子节气门体(ETB)是基本执行器,用于调节进入内燃机的空气质量;因此,它可用于控制任何现代线控驱动配置中的发动机扭矩。为了应对这种汽车设备的非线性和不连续动力学,本文设计了一种新颖的离散时间模型参考自适应控制(MRAC)方法,并在安装在2升发动机上的ETB上进行了实验测试。通过添加显式离散时间自适应积分作用和自适应鲁棒项,该控制策略扩展了离散时间系统的最小控制综合(MCS)算法的类。深入的实验研究表明,提出的控制方法是可行的解决方案,因为它对作用在设备上的非线性扭矩具有鲁棒性,并且与其他MRAC策略相比,尤其是对于the行周围的小参考信号,它可以确保提供更好的性能。植物非线性会严重影响ETB动态的原始位置。

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