Greedy Local Routing Strategy for Autonomous Global Load Balancing Based on Three-Dimensional Potential Field

IEEE Communications Letters(2010)

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摘要
We discuss a traffic load balancing scheme for three-dimensional (3D) wireless mesh networks (WMNs), which deals with global load balancing through only one-hop local information. With a finite element method (FEM), we derive a distributed form of a solution for 3D Poisson's equation to construct a routing metric sensitive to traffic loads. For practical validation, we implement it on an IEEE 802.11-based WMN testbed platform. Experiment results show that our protocol chooses routing paths more efficiently for network-wide load balancing than a state-of-the-art routing protocol, OLSR-ETX.
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traffic load,routing,routing protocol,ieee 802.11-based wmn,state-of-the-art routing protocol,olsr-etx,global load balancing,one-hop local information,greedy local routing strategy,experiment result,traffic load balancing scheme,wireless mesh networks,wireless mesh network,field based routing,autonomous global load,wmn testbed platform,finite element method,poisson equation,practical validation,three-dimensional potential field,routing protocols,finite element analysis,autonomous global load balancing,three-dimensional wireless mesh networks,telecommunication traffic,communication system traffic,network-wide load balancing,wireless lan,electrostatic analysis,3d poisson's equation,network topology,finite element methods,logic gates,testing,electric potential,boundary conditions,electrostatics,load balance,three dimensional
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