Optimization of Scheduling in Wireless Ad-Hoc Networks Using Matrix Games
Ebrahim Karami, Savo Glisic

TL;DR
This paper introduces a matrix game approach with soft coloring for optimizing link scheduling in wireless ad-hoc networks, accommodating variable link usage rates for improved network performance.
Contribution
It presents a novel soft coloring method and a matrix game model for optimal scheduling, addressing limitations of traditional coloring schemes.
Findings
Matrix game model effectively optimizes link scheduling.
Soft coloring improves utilization over conventional methods.
Simulation shows enhanced network throughput and efficiency.
Abstract
In this paper, we present a novel application of matrix game theory for optimization of link scheduling in wireless ad-hoc networks. Optimum scheduling is achieved by soft coloring of network graphs. Conventional coloring schemes are based on assignment of one color to each region or equivalently each link is member of just one partial topology. These algorithms based on coloring are not optimal when links are not activated with the same rate. Soft coloring, introduced in this paper, solves this problem and provide optimal solution for any requested link usage rate. To define the game model for optimum scheduling, first all possible components of the graph are identified. Components are defined as sets of the wireless links can be activated simultaneously without suffering from mutual interference. Then by switching between components with appropriate frequencies (usage rate) optimum…
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