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An active set solver for input-constrained robust receding horizon control

机译:用于输入受限鲁棒后视水平控制的有源集求解器

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摘要

An efficient optimization procedure is proposed for computing a receding horizon control law for linear systems with linearly constrained control inputs and additive disturbances. The procedure uses an active set approach to solve the dynamic programming problem associated with the min-max optimization of an H_∞ performance index. The active constraint set is determined at each sampling instant using first-order necessary conditions for optimality. The computational complexity of each iteration of the algorithm depends linearly on the prediction horizon length. We discuss convergence, closed loop stability and bounds on the disturbance l~2-gain in closed loop operation.
机译:提出了一种有效的优化程序,用于计算具有线性约束控制输入和附加扰动的线性系统的后退水平控制律。该过程使用主动集方法来解决与H_∞性能指标的最小-最大优化相关的动态编程问题。使用最优的一阶必要条件在每个采样时刻确定主动约束集。算法每次迭代的计算复杂度线性地取决于预测水平长度。我们讨论了收敛,闭环稳定性以及闭环操作中l〜2增益的界线。

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