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Contract-Based Design of Symbolic Controllers for Safety in Distributed Multiperiodic Sampled-Data Systems

机译:基于合同的符号控制器设计,用于分布式多周期采样数据系统的安全性

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This article presents a symbolic control approach to the design of distributed safety controllers for a class of continuous-time nonlinear systems. More precisely, we consider systems made of components where each component is equipped with a sampled-data controller with its own sampling period, resulting globally in a distributed multiperiodic sampled-data system. Moreover, controllers receive partial information on the state of the other components. We propose a component-based approach to controller synthesis, which relies on the use of abstractions and continuous-time assume-guarantee contracts. The abstractions describe the dynamics of the system from the point of view of each component based on the information structure, whereas assume-guarantee contracts specify guarantees that a component must satisfy if assumptions on the other components are met. We show that our approach makes it possible to decompose a global safety control problem into local ones that can be solved independently. We then show how symbolic control techniques can be used to synthesize controllers that enforce the local control objectives. Illustrative applications in building automation and vehicle platooning are shown.
机译:本文提出了一类连续时间非线性系统的分布式安全控制器设计符号控制方法。更确切地说,我们考虑由每个组件配备有自动采样周期的采样数据控制器的组件制成的系统,在分布式多体采样数据系统中全局导致全局。此外,控制器接收关于其他组件的状态的部分信息。我们提出了一种基于组成的控制器合成方法,依赖于使用抽象和连续时间担保合同。该抽象根据信息结构从每个组件的角度描述系统的动态,而假设保证合同指定保证组件如果满足其他组件上的假设,则必须满足组件。我们表明我们的方法可以将全球安全控制问题分解为可以独立解决的本地安全控制问题。然后,我们展示了如何使用符号控制技术如何合成强制执行本地控制目标的控制器。显示了楼宇自动化和车辆排列的说明性应用。

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