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Constraint-Based Approach for Analysis of Hybrid Systems

机译:基于约束的混合系统分析方法

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This paper presents a constraint-based technique for discovering a rich class of inductive invariants (boolean combinations of polynomial inequalities of bounded degree) for verification of hybrid systems. The key idea is to introduce a template for the unknown invariants and then translate the verification condition into an {exist}{arbitrary} constraint, where the template unknowns are existentially quantified and state variables are universally quantified. The verification condition for continuous dynamics encodes that the system does not exit the invariant set from any point on the boundary of the invariant set. The {exist}{arbitrary} constraint is transformed into {exist} constraint using Farkas lemma. The {exist} constraint is solved using a bit-vector decision procedure. We present preliminary experimental results that demonstrate the feasibility of our approach of solving the {exist}{arbitrary} constraints generated from models of real-world hybrid systems.
机译:本文介绍了一种基于约束的技术,用于发现丰富的归纳不变性(Boolean组合的有界度的多项式不等式),用于验证混合系统。关键的想法是向未知不变的模板介绍一个模板,然后将验证条件转换为{存在} {任意}约束,其中模板未知数是存在量化的,并且状态变量是普遍量化的。连续动态的验证条件编码系统不会从不变集的边界上的任何点退出不变集。使用Farkas Lemma将{存在} {任意}约束转换为{存在}约束。使用位矢量决策过程解决{存在}约束。我们提出了初步实验结果,证明了我们解决{存在} {asshitirary}约束的方法的可行性。

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