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Multi-channel power-controlled directional MAC for wireless mesh networks

机译:用于无线网状网络的多通道功率控制定向MAC

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Wireless Mesh Networks (WMNs) have emerged recently as a technology for providing high-speed last mile connectivity in next-generation wireless networks. Several MAC protocols that exploit multiple channels and directional antennas have been proposed in the literature to increase the performance of WMNs. However, while these techniques can improve the wireless medium utilization by reducing radio interference and the impact of the exposed nodes problem, they can also exacerbate the hidden nodes problem. Therefore, efficient MAC protocols need to be carefully designed to fully exploit the features offered by multiple channels and directional antennas. In this paper we propose a novel Multi-Channel Power-Controlled Directional MAC protocol (MPCD-MAC) for nodes equipped with multiple network interfaces and directional antennas. MPCD-MAC uses the standard RTS-CTS-DATA-ACK exchange procedure. The novel difference is the transmission of the RTS and CTS packets in all directions on a separate control channel, while the DATA and ACK packets are transmitted only directionally on an available data channel at the minimum required power, taking into account the interference generated on already active connections. This solution spreads the information on wireless medium reservation (RTS/CTS) to the largest set of neighbors, while data transfers take place directionally on separate channels to increase spatial reuse. Furthermore, power control is used to limit the interference produced over active nodes. We measure the performance of MPCD-MAC by simulation of several realistic network scenarios, and we compare it with other approaches proposed in the literature. The results show that our scheme increases considerably both the total traffic accepted by the network and the fairness among competing connections.
机译:无线网状网络(WMN)最近作为一种用于在下一代无线网络中提供高速最后一英里连接的技术而出现。在文献中已经提出了几种利用多个信道和定向天线的MAC协议,以提高WMN的性能。但是,尽管这些技术可以通过减少无线电干扰和暴露节点问题的影响来提高无线媒体的利用率,但它们也会加剧隐藏节点问题。因此,需要精心设计有效的MAC协议,以充分利用多通道和定向天线提供的功能。在本文中,我们为配备了多个网络接口和定向天线的节点提出了一种新颖的多通道功率控制定向MAC协议(MPCD-MAC)。 MPCD-MAC使用标准的RTS-CTS-DATA-ACK交换过程。新颖的区别在于,RTS和CTS数据包在一个单独的控制信道上在所有方向上的传输,而DATA和ACK数据包仅在可用数据信道上以最小的所需功率定向传输,同时考虑了已经存在的干扰。活动连接。该解决方案将有关无线媒体预留(RTS / CTS)的信息传播到最大的邻居集合,而数据传输则定向在单独的信道上进行,以增加空间复用性。此外,功率控制用于限制在活动节点上产生的干扰。我们通过模拟几种实际的网络场景来测量MPCD-MAC的性能,并将其与文献中提出的其他方法进行比较。结果表明,我们的方案大大增加了网络接受的总流量和竞争连接之间的公平性。

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