We present an approach of topology biased random walks for undirected networks. We focus on a one-parameter family of biases, and by using a formal analogy with perturbation theory in quantum mechanics we investigate the features of biased random walks. This analogy is extended through the use of parametric equations of motion to study the features of random walks vs parameter values. Furthermore, we show an analysis of the spectral gap maximum associated with the value of the second eigenvalue of the transition matrix related to the relaxation rate to the stationary state. Applications of these studies allow ad hoc algorithms for the exploration of complex networks and their communities. © 2010 The American Physical Society
This work investigates a paths-based statistical physics formalism, inspired from the bag-of-paths f...
Doctor of PhilosophyDepartment of StatisticsMichael HigginsIn many sciences---for example Sociology,...
Complex networks exhibit a wide range of collective dynamic phenomena, including synchronization, di...
We present an approach of topology biased random walks for undirected networks. We focus on a one-pa...
6 pages, 1 figure6 pages, 1 figure6 pages, 1 figureA simple strategy to explore a network is to use ...
The aim of this paper is to check feasibility of using the maximal-entropy random walk in algorithms...
Random walks are ubiquitous in the sciences, and they are interesting from both theoretical and prac...
Community structures have been identified in various complex real-world networks, for example, commu...
WOS: 000426423600003Community structure and its detection in complex networks has been the subject o...
A distributed system or network can be modeled as a graph representing the "who knows who" relations...
Abstract—Developing simple distributed algorithms to allow nodes to perform topology discovery and m...
This paper investigates, both theoretically and numerically, preferential random walks (PRW) on weig...
: Interconnected systems have to route information to function properly: At the lowest scale neural ...
We quantify the effectiveness of random walks for searching and construction of unstructured peer-to...
Complex modular networks appear frequently, notably in the biological or social sciences. We focus ...
This work investigates a paths-based statistical physics formalism, inspired from the bag-of-paths f...
Doctor of PhilosophyDepartment of StatisticsMichael HigginsIn many sciences---for example Sociology,...
Complex networks exhibit a wide range of collective dynamic phenomena, including synchronization, di...
We present an approach of topology biased random walks for undirected networks. We focus on a one-pa...
6 pages, 1 figure6 pages, 1 figure6 pages, 1 figureA simple strategy to explore a network is to use ...
The aim of this paper is to check feasibility of using the maximal-entropy random walk in algorithms...
Random walks are ubiquitous in the sciences, and they are interesting from both theoretical and prac...
Community structures have been identified in various complex real-world networks, for example, commu...
WOS: 000426423600003Community structure and its detection in complex networks has been the subject o...
A distributed system or network can be modeled as a graph representing the "who knows who" relations...
Abstract—Developing simple distributed algorithms to allow nodes to perform topology discovery and m...
This paper investigates, both theoretically and numerically, preferential random walks (PRW) on weig...
: Interconnected systems have to route information to function properly: At the lowest scale neural ...
We quantify the effectiveness of random walks for searching and construction of unstructured peer-to...
Complex modular networks appear frequently, notably in the biological or social sciences. We focus ...
This work investigates a paths-based statistical physics formalism, inspired from the bag-of-paths f...
Doctor of PhilosophyDepartment of StatisticsMichael HigginsIn many sciences---for example Sociology,...
Complex networks exhibit a wide range of collective dynamic phenomena, including synchronization, di...