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Channel assignment for WLAN by considering overlapping channels in SINR interference model

机译:通过在SINR干扰模型中考虑重叠信道来为WLAN分配信道

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It has been believed that the simultaneous use of multiple channels in 802.11 wireless local area networks (WLANs) can improve network performance. Many efforts have been done to better exploit multiple non-overlapped channels. However, due to the limited number of orthogonal channels in IEEE 802.11 b/g standards, using only non-overlapping channels cannot completely eliminate the interference. Recent studies indicate that we can improve the full-range channel utilization and the network throughput by properly utilizing the partially overlapping channels. However, there are only limited studies of channel assignment algorithms for partially overlapping channels. In this paper, we investigate the problem of partially overlapping channel assignment to improve the performance of 802.11 wireless networks based on SINR model. Using the SINR model, we deduce a direct relationship between maximizing system throughput and minimizing total interference when partially overlapping channels are employed. After that, we propose a greedy method to minimize the total interference for throughput maximization. We evaluate our algorithm through extensive simulations and compare its performances with those of the state-of-the-art.
机译:可以相信,在802.11无线局域网(WLAN)中同时使用多个信道可以提高网络性能。为了更好地利用多个不重叠的通道,已经做了很多努力。但是,由于IEEE 802.11 b / g标准中正交信道的数量有限,仅使用非重叠信道无法完全消除干扰。最近的研究表明,通过适当地利用部分重叠的信道,我们可以提高全范围信道的利用率和网络吞吐量。但是,对于部分重叠的信道,信道分配算法的研究很少。在本文中,我们研究了基于SINR模型的部分重叠信道分配问题,以提高802.11无线网络的性能。使用SINR模型,我们得出了当采用部分重叠的信道时,在最大化系统吞吐量和最小化总干扰之间的直接关系。在那之后,我们提出了一种贪婪的方法来最小化总干扰,以实现吞吐量最大化。我们通过广泛的仿真评估算法,并将其性能与最新技术进行比较。

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