Transportation dynamics on networks of mobile agents
arXiv:1109.0693 · doi:10.1103/PhysRevE.83.016102
Abstract
Most existing works on transportation dynamics focus on networks of a fixed structure, but networks whose nodes are mobile have become widespread, such as cell-phone networks. We introduce a model to explore the basic physics of transportation on mobile networks. Of particular interest are the dependence of the throughput on the speed of agent movement and communication range. Our computations reveal a hierarchical dependence for the former while, for the latter, we find an algebraic power law between the throughput and the communication range with an exponent determined by the speed. We develop a physical theory based on the Fokker-Planck equation to explain these phenomena. Our findings provide insights into complex transportation dynamics arising commonly in natural and engineering systems.
References in corpus (10)
- Understanding individual human mobility patterns
- The scaling laws of human travel
- Mobility promotes and jeopardizes biodiversity in rock-paper-scissors games
- Optimal routing on complex networks
- Integrating static and dynamic information for routing traffic
- An adaptive routing strategy for packet delivery in complex networks
- Congestion and decongestion in a communication network
- Traffic dynamics in scale-free networks with limited packet-delivering capacity
- Optimizing transport efficiency on scale-free networks through assortative or dissortative topology
- Scaling of critical connectivity of mobile ad hoc communication networks
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