Nonlinear Optimal Generalized Predictive Functional Control Applied to Quasi-LPV Model of Automotive Electronic Throttle

S. Alotaibi, M. Grimble
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引用次数: 2

Abstract

A Nonlinear Optimal Generalized Predictive Functional Control algorithm is presented for the control of quasi linear parameter varying state-space systems. A scalar automotive electronic throttle body is simulated to demonstrate typical results. The controller structure is specified in a restricted structure form including a set of pre-specified linear transfer-functions and a vector of gains that are found to minimize a GPC cost-index. This approach enables a range of classical controller structures to be used in the feedback loop such as extended PI, PID or of a more general transfer-function form. The controller is introduced along with a dynamic cost-weighting tuning future. A simulation is used to validate the performance of the restricted structure controller for regulation and tracking problems assessed against automotive performance standards.
非线性最优广义预测函数控制在汽车电子节气门准lpv模型中的应用
针对准线性变参数状态空间系统,提出了一种非线性最优广义预测泛函控制算法。对一个标量汽车电子节流阀体进行了仿真,验证了典型结果。控制器结构以限制结构形式指定,包括一组预先指定的线性传递函数和增益向量,这些增益向量被发现可以最小化GPC成本指数。这种方法可以在反馈回路中使用一系列经典控制器结构,如扩展PI, PID或更一般的传递函数形式。介绍了该控制器以及动态成本加权调谐。通过仿真验证了约束结构控制器对汽车性能标准下的调节和跟踪问题的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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