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Tube-Based Internal Model Control of Differentially Flat Input-Affine SISO Systems under Input Constraints

机译:基于管的内部模型控制输入限制下的差异扁平输入仿射SISO系统

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In this paper an optimal control approach based on a combination of the flatness theory and the internal model control (IMC) concept is designed to keep the controlled state within a predefined tube while respecting input constraints. This contribution uses ideas developed in the design of flatness-based feedforward IMC controllers for setpoint tracking and extends them to ‘tube tracking’. It shows the interesting result that for flat input-affine systems the control task of remaining within a tube while minimizing energy consumption and respecting input constraints can be expressed by a convex quadratic optimization problem. The computational feasibility of the developed control strategy is ensured by a purely analytical solution for the quadratic optimization problem derived based on the Karush-Kuhn-Tucker (KKT) optimality conditions. The control approach is illustrated by a simulation example.
机译:在本文中,基于平坦度理论和内部模型控制(IMC)概念的组合的最佳控制方法被设计为在尊重输入约束的同时将受控状态保持在预定管内。此贡献利用设计在基于平坦的馈电IMC控制器设计中开发的想法,用于设定值跟踪,并将它们延伸到“管跟踪”。它显示了用于扁平输入 - 仿射系统的有趣结果,该系统可以通过凸二次优化问题来表示剩余在管内的控制任务,同时最小化能量消耗和尊重输入约束。通过基于Karush-Kuhn-Tucker(KKT)最优性条件,通过纯粹的分析解决方案来确保开发控制策略的计算可行性。通过模拟示例说明控制方法。

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