[[abstract]]Motivated by the beauty and the simplicity of biologically inspired algorithm, we study a class of self-organizing protocols based on the pulse-coupled oscillators (PCO). Specifically, we consider two different dynamics of this protocol and show how by flipping the sign of the coupling among the nodes translates into two different emerging pattern: synchrony and de-synchrony. The former is a state where all the nodes pulse at unison. The latter is a situation where the nodes alternate their firings, so that the time between two consecutive firings is constant.[[fileno]]2030137030038[[department]]電機工程學
<div><p>Recently, Pulse Coupled Oscillator (PCO)-based travelling waves have attracted substantial a...
We define the "Pulse Synchronization" problem that requires nodes to achieve tight synchro...
Energy-efficient pulse coupled oscillators (PCOs) have recently gained significant research attentio...
The theory of pulse-coupled oscillators provides a framework to formulate and develop self-organizin...
[[abstract]]This paper investigates strategies to achieve collectively coordination in sensor networ...
Precise synchronization among networked agents is responsible for phenomena as diverse as coral spaw...
[[abstract]]Pulse coupled oscillators (PCOs) are pulsing devices that pulse individually in a period...
Abstract. The synchronization of periodic events is an important and useful primitive for many aspec...
© 2015 IEEE. This paper presents a novel primitive for self-organization amongst multiple coexisting...
In this article I investigate the novel synchronization behaviors of evolving pulse-coupled oscillat...
In recent years, several models introduced in mathematical biology and natural science have been use...
The principles of event-based control appear to be a backbone of many self-coordinating natural syst...
Oscillators exhibit some of the simplest dynamic behavior, yet systems of inter-acting oscillators a...
[[abstract]]© 2005 Institute of Electrical and Electronics Engineers-Synchronization is considered a...
Oscillators exhibit some of the simplest dynamic behavior, yet systems of interacting oscillators ar...
<div><p>Recently, Pulse Coupled Oscillator (PCO)-based travelling waves have attracted substantial a...
We define the "Pulse Synchronization" problem that requires nodes to achieve tight synchro...
Energy-efficient pulse coupled oscillators (PCOs) have recently gained significant research attentio...
The theory of pulse-coupled oscillators provides a framework to formulate and develop self-organizin...
[[abstract]]This paper investigates strategies to achieve collectively coordination in sensor networ...
Precise synchronization among networked agents is responsible for phenomena as diverse as coral spaw...
[[abstract]]Pulse coupled oscillators (PCOs) are pulsing devices that pulse individually in a period...
Abstract. The synchronization of periodic events is an important and useful primitive for many aspec...
© 2015 IEEE. This paper presents a novel primitive for self-organization amongst multiple coexisting...
In this article I investigate the novel synchronization behaviors of evolving pulse-coupled oscillat...
In recent years, several models introduced in mathematical biology and natural science have been use...
The principles of event-based control appear to be a backbone of many self-coordinating natural syst...
Oscillators exhibit some of the simplest dynamic behavior, yet systems of inter-acting oscillators a...
[[abstract]]© 2005 Institute of Electrical and Electronics Engineers-Synchronization is considered a...
Oscillators exhibit some of the simplest dynamic behavior, yet systems of interacting oscillators ar...
<div><p>Recently, Pulse Coupled Oscillator (PCO)-based travelling waves have attracted substantial a...
We define the "Pulse Synchronization" problem that requires nodes to achieve tight synchro...
Energy-efficient pulse coupled oscillators (PCOs) have recently gained significant research attentio...