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Implementation and evaluation of a simulation system based on particle swarm optimisation for node placement problem in wireless mesh networks

机译:无线网络中基于粒子群算法的节点放置问题仿真系统的实现与评估

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With the fast development of wireless technologies, wireless mesh networks (WMNs) are becoming an important networking infrastructure due to their low cost and increased high speed wireless internet connectivity. This paper implements a simulation system based on particle swarm optimisation (PSO) in order to solve the problem of mesh router placement in WMNs. Four replacement methods of mesh routers are considered: constriction method (CM), random inertia weight method (RIWM), linearly decreasing Vmax method (LDVM) and linearly decreasing inertia weight method (LDIWM). Simulation results are provided, showing that the CM converges very fast, but has the worst performance among the methods. The considered performance metrics are the size of giant component (SGC) and the number of covered mesh clients (NCMC). The RIWM converges fast and the performance is good. The LDIWM is a combination of RIWM and LDVM. The LDVM converges after 170 number of phases but has a good performance.
机译:随着无线技术的飞速发展,无线网状网络(WMN)由于其低成本和高速无线互联网连接而成为重要的网络基础架构。为了解决WMN中网状路由器的放置问题,本文实现了一种基于粒子群优化(PSO)的仿真系统。考虑了网状路由器的四种替换方法:压缩方法(CM),随机惯性权重方法(RIWM),线性减小Vmax方法(LDVM)和线性减小惯性权重方法(LDIWM)。提供的仿真结果表明,CM收敛速度非常快,但是在这些方法中性能最差。考虑的性能指标是巨型组件(SGC)的大小和覆盖的网状客户端(NCMC)的数量。 RIWM收敛速度快,性能良好。 LDIWM是RIWM和LDVM的组合。 LDVM在170个相位后会收敛,但性能良好。

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