Formal Guarantees in Data-Driven Model Identification and Control Synthesis

Sadra Sadraddini, C. Belta
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引用次数: 47

Abstract

For many performance-critical control systems, an accurate (simple) model is not available in practice. Thus, designing controllers with formal performance guarantees is challenging. In this paper, we develop a framework to use input-output data from an unknown system to synthesize controllers from signal temporal logic (STL) specifications. First, by imposing mild assumptions on system continuity, we find a set-valued piecewise affine (PWA) model that contains all the possible behaviors of the concrete system. Next, we introduce a novel method for STL control of PWA systems with additive disturbances. By taking advantage of STL quantitative semantics, we provide lower-bound certificates on the degree of STL satisfaction of the closed-loop concrete system. Illustrative examples are presented.
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数据驱动模型识别与控制综合的形式化保证
对于许多性能关键型控制系统,在实践中没有精确(简单)的模型。因此,设计具有正式性能保证的控制器是具有挑战性的。在本文中,我们开发了一个框架来使用来自未知系统的输入输出数据来从信号时序逻辑(STL)规范合成控制器。首先,通过对系统连续性施加温和的假设,我们找到了包含具体系统所有可能行为的集值分段仿射(PWA)模型。其次,我们介绍了一种新的具有加性扰动的PWA系统的STL控制方法。利用STL定量语义,给出了闭环具体系统对STL满足程度的下界证明。给出了实例说明。
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Session details: Modeling and Verification Algorithms for exact and approximate linear abstractions of polynomial continuous systems Formal Controller Synthesis from Hybrid Programs Session details: Stabilization and Control Design Compositional Synthesis for Symbolic Control
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