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Real-time model predictive control based on dual gradient projection: Theory and fixed-point FPGA implementation

机译:基于双梯度投影的实时模型预测控制:理论和定点FpGa实现

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摘要

This paper proposes a method to design robust model predictive control (MPC) laws for discrete-time linear systems with hard mixed constraints on states and inputs, in case of only an inexact solution of the associated quadratic program is available, because of real-time requirements. By using a recently proposed dual gradient-projection algorithm, it is proved that the discrepancy of the optimal control law as compared with the obtained one is bounded even if the solver is implemented in fixed-point arithmetic. By defining an alternative MPC problem with tightened constraints, a feasible solution is obtained for the original MPC problem, which guarantees recursive feasibility and asymptotic stability of the closed-loop system with respect to a set including the origin, also considering the presence of external disturbances. The proposed MPC law is implemented on a field-programmable gate array in order to show the practical applicability of the method.
机译:本文提出了一种为状态和输入具有严格混合约束的离散时间线性系统设计鲁棒模型预测控制(MPC)律的方法,因为只有实时相关联二次程序的不精确解才可用要求。通过使用最近提出的双重梯度投影算法,证明了即使以定点算法实现求解器,与所获得的最优控制律的差异也是有限的。通过定义具有严格约束条件的替代MPC问题,可以为原始MPC问题获得可行的解决方案,从而保证了闭环系统相对于包括原点的集合的递归可行性和渐近稳定性,同时考虑了外部干扰的存在。拟议的MPC法在现场可编程门阵列上实现,以显示该方法的实际适用性。

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