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An Adaptive Hybrid Control Algorithm for Sender-Receiver Clock Synchronization

机译:一种自适应混合控制算法,用于发件人 - 接收器时钟同步

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This paper presents an innovative hybrid systems approach to the sender-receiver synchronization of timers. Via the hybrid systems framework, we unite the traditional sender-receiver algorithm for clock synchronization with an online, adaptive strategy to achieve synchronization of the clock rates to exponentially synchronize a pair of clocks connected over a network. Following the conventions of the algorithm, clock measurements of the nodes are given at periodic time instants, and each node uses these measurements to achieve synchronization. For this purpose, we introduce a hybrid system model of a network with continuous and impulsive dynamics that captures the sender-receiver algorithm as a state-feedback controller to synchronize the network clocks. Moreover, we provide sufficient design conditions that ensure attractivity of the synchronization set.
机译:本文提出了一种创新的混合系统方法,用于定时器的发件人 - 接收器同步。通过混合系统框架,我们联合传统的发件人接收算法,用于使用在线,自适应策略,实现时钟速率的同步,以指数地同步通过网络连接的一对时钟。在算法的约定之后,在周期性时刻给出节点的时钟测量,每个节点都使用这些测量来实现同步。为此目的,我们介绍了一种具有连续和冲动动态的网络的混合系统模型,该动态捕获发送者 - 接收器算法作为状态反馈控制器以使网络时钟同步。此外,我们提供了足够的设计条件,确保了同步集的吸引力。

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