Numerous recent studies have focused on random walks on undirected binary scale-free networks. However, random walks with a given target node on weighted directed networks remain less understood. In this paper, we first introduce directed weighted Koch networks, in which any pair of nodes is linked by two edges with opposite directions, and weights of edges are controlled by a parameter θ . Then, to evaluate the transportation efficiency of random walk, we derive an exact solution for the average trapping time (ATT), which agrees well with the corresponding numerical solution. We show that leading behaviour of ATT is function of the weight parameter θ and that the ATT can grow sub-linearly, linearly and super-linearly with varying θ . Final...
We focus on the problem of performing random walks efficiently in a distributed network. Given bandw...
Spreading of epidemic, stochastic resonance, chemical reaction and neuron firing dynamics can be des...
This paper investigates, both theoretically and numerically, preferential random walks (PRW) on weig...
Random walks on binary scale-free networks have been widely studied. However, many networks in real ...
Efficiently controlling the trapping process is very significant in the study of trapping problem in...
Based on the Koch network constructed using Koch fractals, we proposed a class of expanded...
Abstract In this paper, we present the weighted scale-free treelike networks controlled by the weigh...
In this paper, we propose a family of weighted extended Koch networks based on a class of ...
Random walks on complex networks, especially scale-free networks, have attracted considerable intere...
It is known that the heterogeneity of scale-free networks helps enhancing the efficiency of trapping...
Explicit determination of the mean first-passage time (MFPT) for the trapping problem on complex med...
Fractal dimension is central to understanding dynamical processes occurring on networks; h...
PACS 05.40.Fb – Random walks and Levy flights PACS 82.20.Wt – Computational modeling; simulation PAC...
Biased random walk has been studied extensively over the past decade especially in the transport and...
Biased random walk has been studied extensively over the past decade especially in the transport and...
We focus on the problem of performing random walks efficiently in a distributed network. Given bandw...
Spreading of epidemic, stochastic resonance, chemical reaction and neuron firing dynamics can be des...
This paper investigates, both theoretically and numerically, preferential random walks (PRW) on weig...
Random walks on binary scale-free networks have been widely studied. However, many networks in real ...
Efficiently controlling the trapping process is very significant in the study of trapping problem in...
Based on the Koch network constructed using Koch fractals, we proposed a class of expanded...
Abstract In this paper, we present the weighted scale-free treelike networks controlled by the weigh...
In this paper, we propose a family of weighted extended Koch networks based on a class of ...
Random walks on complex networks, especially scale-free networks, have attracted considerable intere...
It is known that the heterogeneity of scale-free networks helps enhancing the efficiency of trapping...
Explicit determination of the mean first-passage time (MFPT) for the trapping problem on complex med...
Fractal dimension is central to understanding dynamical processes occurring on networks; h...
PACS 05.40.Fb – Random walks and Levy flights PACS 82.20.Wt – Computational modeling; simulation PAC...
Biased random walk has been studied extensively over the past decade especially in the transport and...
Biased random walk has been studied extensively over the past decade especially in the transport and...
We focus on the problem of performing random walks efficiently in a distributed network. Given bandw...
Spreading of epidemic, stochastic resonance, chemical reaction and neuron firing dynamics can be des...
This paper investigates, both theoretically and numerically, preferential random walks (PRW) on weig...