Symbolic Control of Hybrid Systems from Signal Temporal Logic Specifications

Rafael Rodrigues da Silva, Vince Kurtz, Hai Lin
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引用次数: 2

Abstract

In safety-critical systems, it is desirable to automatically synthesize controllers for complex tasks with guaranteed safety and correctness. Although much progress has been made through controller synthesis from temporal logic specifications, existing approaches generally require conservative assumptions and do not scale well with system dimensionality. We propose a scalable, provably complete algorithm that synthesizes continuous trajectories for hybrid systems to satisfy temporal logic specifications. Specifically, we harness highly efficient Boolean satisfiability (SAT) and Linear Programming (LP) solvers to find trajectories that satisfy non-convex Signal Temporal Logic (STL) specifications for a class of high dimensional hybrid systems. The proposed design algorithms are proven sound and complete, and are validated in simulation experiments.
基于信号时序逻辑规范的混合系统符号控制
在安全关键型系统中,需要在保证安全性和正确性的前提下自动合成复杂任务的控制器。虽然通过时序逻辑规范的控制器合成已经取得了很大的进展,但现有的方法通常需要保守的假设,并且不能很好地随系统维度扩展。我们提出了一种可扩展的、可证明的完整算法,该算法综合了混合系统的连续轨迹,以满足时间逻辑规范。具体来说,我们利用高效的布尔可满足性(SAT)和线性规划(LP)求解器来寻找满足一类高维混合系统的非凸信号时间逻辑(STL)规范的轨迹。所提出的设计算法被证明是完善的,并在仿真实验中得到了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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