A Nash game algorithm for control of rate in the integration of WSN and mobile network
Chenlin Zhao, Shuyuan Meng
Abstract
Chenlin Zhao, Shuyuan Meng
Abstract
On the background of integration of WSN and mobile network, the mobile agent nodes access to mobile network through the base station and sent data to the remote server to deal with. Because the resource is limit for the mobile network, the throughout of the mobile agent node has threshold. We propose an algorithm for rate control based on non-cooperative Game Theory, which will assign different rate to the sensor nodes. This algorithm can adjust the rate according to the users' priorities, which solves the problem that many nodes compete for limited bandwidth resource of a mobile agent node.
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On the background of integration of WSN and mobile network, the mobile agent nodes access to mobile network through the base station and sent data to the remote server to deal with. Because the resource is limit for the mobile network, the throughout of the mobile agent node has threshold. We propose an algorithm for rate control based on non-cooperative Game Theory, which will assign different rate to the sensor nodes. This algorithm can adjust the rate according to the users' priorities, which solves the problem that many nodes compete for limited bandwidth resource of a mobile agent node.
Key concepts: Computer science, Computer network, Base station, Node (physics), Mobile computing, Mobile telephony, Mobile agent, Distributed computing