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A Biologically Inspired Dynamic Channel Allocation Technique in 802.11 WLANs with Multiple Access Points

机译:具有多个接入点的802.11 WLAN中的一种生物启发动态信道分配技术

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Appropriate channel selection for each Access Point (AP) is one of the major challenges in setting up and operating densely deployed 802.11 WLANs. The aim with the channel selection is to provide efficient reuse of spectrum and therefore minimize interference and improve user experience and quality of service. In this paper we adopt biologically inspired approaches in the form of Hybrid Genetic Algorithms and Simulated Annealing to solve the channel selection problem in single-hop 802.11b/g networks with multiple APs. Theoretical analysis and simulation results show that our proposed hybrid algorithm has a fast convergence rate and can achieve good performance under different Signal to Interference and Noise Ratio (SINR) conditions. The algorithms are tested and compared on different network scenarios and their performance compared in terms of statistical measures.
机译:每个接入点(AP)的适当频道选择是设置和操作密集部署的802.11 WLAN中的主要挑战之一。渠道选择的目的是提供频谱的有效再利用,从而最大限度地减少干扰并提高用户体验和服务质量。在本文中,我们采用混合遗传算法的形式采用生物启发方法,并模拟退火,以解决具有多个AP的单跳802.11b / g网络中的信道选择问题。理论分析和仿真结果表明,我们所提出的混合算法具有快速收敛速率,可以在不同信号下实现良好的性能,以对干扰和噪声比(SINR)条件下。在统计措施方面,测试了该算法并比较了不同的网络情景和它们的性能。

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