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Differentiable Safe Controller Design through Control Barrier Functions

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arxiv 2209.10034 v2 pith:5FZQDVWY submitted 2022-09-20 eess.SY cs.LGcs.SY

Differentiable Safe Controller Design through Control Barrier Functions

classification eess.SY cs.LGcs.SY
keywords controllerssafetycontrollearning-basedperformancebarrierclosed-loopcontroller
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Learning-based controllers, such as neural network (NN) controllers, can show high empirical performance but lack formal safety guarantees. To address this issue, control barrier functions (CBFs) have been applied as a safety filter to monitor and modify the outputs of learning-based controllers in order to guarantee the safety of the closed-loop system. However, such modification can be myopic with unpredictable long-term effects. In this work, we propose a safe-by-construction NN controller which employs differentiable CBF-based safety layers, and investigate the performance of safe-by-construction NN controllers in learning-based control. Specifically, two formulations of controllers are compared: one is projection-based and the other relies on our proposed set-theoretic parameterization. Both methods demonstrate improved closed-loop performance over using CBF as a separate safety filter in numerical experiments.

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