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Predictive Control with terminal constraint for 2#x00D7;2 hyperbolic systems of conservation laws

机译:具有终极约束的2×2双曲守恒律系统的预测控制

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This paper presents a Receding Horizon Optimal Control (RHOC) scheme with zero terminal constraint, to guarantee the stability of linear 2×2 hyperbolic systems with boundary control. The boundary control problem is first reformulated into the abstract form in which the existence and the explicit formulation of the optimal control were established in the literature. These results are then applied in the RHOC scheme to give a complete proof of stability of the closed-loop system. For the implementation, the calculus of variation approach is used to derive the adjoint state which will be discretized and solved with the state to obtain the optimal control. It turns out that this optimal solution is a function of the state and can be implemented in a feedback form. Finally, a simulation is carried out to validate the here-proposed approach.
机译:提出了一种具有零终端约束的后视最优控制方案,以保证具有边界控制的线性2×2双曲系统的稳定性。首先将边界控制问题重新表述为抽象形式,在文献中建立了最优控制的存在性和明确表述。然后将这些结果应用到RHOC方案中,以给出闭环系统稳定性的完整证明。对于实现,使用变分法的演算来导出伴随状态,该伴随状态将被离散化并与该状态求解以获得最优控制。事实证明,这种最佳解决方案是状态的函数,并且可以以反馈形式实现。最后,进行仿真以验证本文提出的方法。

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