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Design and implementation of multicasting for multi-channel multi-interface wireless mesh networks

机译:多通道多接口无线网状网络组播的设计与实现

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Multicasting is a useful communication method in wireless mesh networks (WMNs). Many applications in WMNs require efficient and reliable multicast communications, i.e., high delivery ratio with low overhead among a group of recipients. In spite of its significance, little work has been done on providing such multicast service in multichannel WMNs. Traditional multicast protocols for wireless and multi-hop networks tend to assume that all nodes, each of which is equipped with a single interface, collaborate on the same channel. This single-channel assumption is not always true, as WMNs often provide nodes with multiple interfaces to enhance performance. In multichannel and multi-interface (MCMI) WMNs, the same multicast data must be sent multiple times by a sender node if its neighboring nodes operate on different channels. In this paper, we try to tackle the challenging issue of how to desien a multicast nrotocol more suitable for MCMT WMNs. Our multicast protocol builds multicast paths while inviting multicast members, and tries to allocate the same channel to neighboring members in a bottom-up manner. By unifying fixed channels of one-hop multicast neighbors, the proposed algorithm can improve the performance such as reducing multicast data transmission overhead and delay, while managing a successful delivery ratio. In order to prove such expectation on the performance, we have implemented and evaluated the proposed solution on the real testbed having the maximum 24 nodes, each of which is equipped with two IEEE 802.11 a Atheros WLAN cards.
机译:在无线网状网络(WMN)中,多播是一种有用的通信方法。 WMN中的许多应用程序都需要高效且可靠的多播通信,即,一组接收者之间的高传送率和低开销。尽管其重要性,但在多信道WMN中提供这种多播服务方面所做的工作很少。用于无线和多跳网络的传统多播协议倾向于假定所有节点(每个节点配备一个接口)在同一信道上协作。这种单通道假设并不总是正确的,因为WMN经常为节点提供多个接口以增强性能。在多通道和多接口(MCMI)WMN中,如果发送方节点的相邻节点在不同的通道上运行,则必须由发送方节点多次发送相同的多播数据。在本文中,我们尝试解决如何设计更适合MCMT WMN的组播协议这一难题。我们的多播协议会在邀请多播成员的同时构建多播路径,并尝试以自下而上的方式将相同的频道分配给相邻成员。通过统一一跳组播邻居的固定信道,该算法可以在提高成功传递率的同时,提高组播数据传输的开销和延迟等性能。为了证明对性能的这种期望,我们在具有最多24个节点的真实测试台上实施并评估了建议的解决方案,每个节点都配备了两个IEEE 802.11 a Atheros WLAN卡。

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