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Robustly Complete Synthesis of Memoryless Controllers for Nonlinear Systems With Reach-and-Stay Specifications

机译:具有REACH-and Live规范的非线性系统的无记忆控制器的完全合成

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This article proposes a finitely terminating algorithm to solve reach-and-stay control problems for nonlinear systems. The algorithm is guaranteed to return a control strategy if the specification is robustly realizable. Such a feature is desirable as the commonly used abstraction-based methods are sound but not complete for systems that are not incrementally stable. Fundamental to the proposed method is a fixed-point characterization of the winning set of the system with respect to a given specification, i.e., the initial states that can be controlled to satisfy the specification. The use of an adaptive partitioning scheme not only guarantees the approximation precision of the winning set but also reduces computational time. The effectiveness and efficiency are illustrated by several benchmarking examples.
机译:本文提出了一个有限终止算法来解决非线性系统的覆盖和保持控制问题。如果规范稳健地可实现,则保证算法返回控制策略。这种特征是可取的,因为常用的基于抽象的方法是声音但不适合没有逐步稳定的系统。所提出的方法的根本是关于给定规范的系统的获胜集的定点表征,即可以控制以满足规范的初始状态。使用自适应分区方案不仅保证了获胜集的近似精度,而且还减少了计算时间。若干基准测试示例说明了有效性和效率。

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