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Convergence of Self-Organizing Pulse-Coupled Oscillator Synchronization in Dynamic Networks

机译:动态网络中自组织脉冲耦合振荡器同步的收敛性

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The theory of pulse-coupled oscillators provides a framework to formulate and develop self-organizing synchronization strategies for wireless communications and mobile computing. These strategies show low complexity and are adaptive to changes in the network. Even though several protocols have been proposed and theoretical insight was gained there is no proof that guarantees synchronization of the oscillator phases in general dynamic coupling topologies under technological constraints. Here, we introduce a family of coupling strategies for pulse-coupled oscillators and prove that synchronization emerges for systems with arbitrary connected and dynamic topologies, individually changing signal propagation and processing delays, and stochastic pulse emission. It is shown by simulations how unreliable links or intentionally incomplete communication between oscillators can improve synchronization performance.
机译:脉冲耦合振荡器理论为无线通信和移动计算的制定和发展自组织同步策略提供了框架。这些策略显示出较低的复杂度,并适应网络的变化。即使已经提出了几种协议并获得了理论上的见识,也没有证据可以保证在技术约束下,在一般的动态耦合拓扑中,振荡器相位的同步。在这里,我们介绍了脉冲耦合振荡器的一系列耦合策略,并证明了具有任意连接和动态拓扑,单独更改信号传播和处理延迟以及随机脉冲发射的系统出现了同步。通过仿真显示,振荡器之间不可靠的链接或有意的不完全通信将如何提高同步性能。

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