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Flexible Computational Pipelines for Robust Abstraction-Based Control Synthesis

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arxiv 1905.09503 v1 pith:XWHXYR4M submitted 2019-05-23 cs.SY cs.SY

classification cs.SY
keywords controlsynthesisabstraction-basedcomputationalflexiblerobustsynthesizingabstractions
verification ladder T0 review T1 audit T2 compute T3 formal
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Successfully synthesizing controllers for complex dynamical systems and specifications often requires leveraging domain knowledge as well as making difficult computational or mathematical tradeoffs. This paper presents a flexible and extensible framework for constructing robust control synthesis algorithms and applies this to the traditional abstraction-based control synthesis pipeline. It is grounded in the theory of relational interfaces and provides a principled methodology to seamlessly combine different techniques (such as dynamic precision grids, refining abstractions while synthesizing, or decomposed control predecessors) or create custom procedures to exploit an application's intrinsic structural properties. A Dubins vehicle is used as a motivating example to showcase memory and runtime improvements.

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