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A Distributed Logic for Networked Cyber-Physical Systems

机译:网络化网络物理系统的分布式逻辑

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A distributed logical framework designed to serve as a declarative semantic foundation for Networked Cyber-Physical Systems provides notions of facts and goals that include interactions with the environment via external goal requests, observations that generate facts, and actions that achieve goals. Reasoning rules are built on a partially ordered knowledge-sharing model for loosely coupled distributed computing. The logic supports reasoning in the context of dynamically changing facts and system goals. It can be used both to program systems and to reason about possible scenarios and emerging properties. The underlying reasoning framework is specified in terms of constraints that must be satisfied, making it very general and flexible. Inference rules for an instantiation to a specific local logic (Horn clause logic) are given as a concrete example. The key novel features are illustrated with snippets from an existing application-a theory for self-organizing robots performing a distributed surveillance task. Traditional properties of logical inference and computation are reformulated in this novel context, and related to features of system design and execution. Proofs are outlined for key properties corresponding to soundness, completeness, and termination. Finally, the framework is compared to other formal systems addressing concurrent/distributed computation.
机译:一种分布式逻辑框架,旨在用作网络化网络物理系统的声明性语义基础,它提供了事实和目标的概念,包括通过外部目标请求与环境的交互,生成事实的观察以及实现目标的操作。推理规则建立在部分排序的知识共享模型上,用于松散耦合的分布式计算。该逻辑在动态更改事实和系统目标的上下文中支持推理。它既可以用于对系统进行编程,也可以用于推理可能的情况和新出现的属性。基础推理框架是根据必须满足的约束条件指定的,使其非常通用和灵活。作为具体示例,给出了对特定本地逻辑(Horn子句逻辑)进行实例化的推理规则。关键的新颖功能通过现有应用的摘录进行了说明,这是一种用于自组织机器人执行分布式监视任务的理论。逻辑推理和计算的传统属性在此新颖的上下文中进行了重新表述,并且与系统设计和执行的功能有关。概述了与健全性,完整性和终止性相对应的关键属性的证明。最后,将该框架与其他针对并发/分布式计算的形式系统进行比较。

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