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Using Partially Overlapped Channels for End-to-End Flow Allocation and Channel Assignment in Wireless Mesh Networks

机译:使用部分重叠的信道用于无线网状网络中的端到端流分配和信道分配

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The performance of Multi-Channel Multi-Radio (MC-MR) Wireless Mesh Networks (WMNs) can be improved significantly with the increase in number of channels and radios. Despite the availability of multiple channels in several of the current wireless standards, only a few of them are non-overlapping and many channels are partially overlapped. In this paper, we formulate the joint channel assignment and flow allocation problem for MC-MR WMNs as a Mixed Integer Linear Program (MILP). Unlike most of the previous studies, we consider the case of using both non-overlapped and partially overlapped channels. We consider an objective of maximizing aggregate end-to-end throughput and minimizing queueing delay in the network, instead of the sum of link capacities, since the traffic characteristics of a multihop WMN are quite different from a single hop wireless network. Our formulation takes into consideration several important network parameters such as the transmission power of each node, path loss information, signal to interference plus noise ratio at a node, and frequency response of the filters used in the transmitter and receiver. We show by simulations that our MILP formulation makes efficient use of the spectrum, by providing superior channel assignments and flow allocations with the addition of partially overlapped channels, without the use of any additional spectrum.
机译:随着通道和无线电数量的增加,可以显着提高多通道多电台(MC-MR)无线网状网络(WMN)的性能。尽管在几个当前的无线标准中有多个通道,但它们中的少数是非重叠,并且许多通道部分重叠。在本文中,我们将MC-MR WMN的联合通道分配和流量分配问题作为混合整数线性程序(MILP)。与以前的大多数研究不同,我们考虑使用非重叠和部分重叠的信道的情况。我们考虑最大化聚合端到端吞吐量并最小化网络中排队延迟的目标,而不是链路容量的总和,因为多跳WMN的流量特性与单跳无线网络非常不同。我们的配方考虑了几种重要的网络参数,例如每个节点的传输功率,路径损耗信息,信号到节点处的干扰加噪声比,以及发射器和接收器中使用的滤波器的频率响应。我们通过模拟显示我们的MILP配方通过提供卓越的频道分配和流量分配,通过添加部分重叠的信道来提供频谱,而不使用任何额外的光谱。

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