Probabilistically reliable on-demand multicast in wireless mesh networks

Xin Zhao, C. Chou, Jun Guo, S. Jha, Archan Misra
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引用次数: 18

Abstract

This paper studies probabilistically reliable multicast in wireless mesh networks (WMNs), utilizing MAC layer re-transmission and wireless broadcast advantage to improve both the multicast throughput and the delivery rate. We first present a new multicast routing metric which we call the expected multicast transmissions (EMT). EMT captures the effect of link packet delivery ratio, MAC layer retransmission and wireless broadcast advantage at the same time. The EMT of a MAC layer multicast transmission is the expected number of data transmissions (including retransmissions) required for a packet to reach all the recipients. The EMT of a multicast tree is the sum over the EMT of each forwarding node. Then, we propose a probabilistically reliable on-demand (PROD) multicast protocol with the objective of minimizing the EMT of the multicast tree. Simulation results show that, in comparison with existing approaches, PROD reduces the end-to-end packet loss ratio by up to 30% and improves the multicast throughput by up to 25%. In addition, it reduces the number of transmissions per packet by up to 40% and thus significantly reduces the network overhead of the multicast session.
无线网状网络中概率可靠的按需多播
研究无线网状网络(WMNs)中的概率可靠组播,利用MAC层重传和无线广播的优势提高组播吞吐量和传输速率。首先提出了一种新的组播路由度量,我们称之为预期组播传输量(EMT)。EMT同时捕捉到了链路分组分发率、MAC层重传和无线广播优势的影响。MAC层多播传输的EMT是数据包到达所有接收方所需的数据传输(包括重传)的预期数量。组播树的EMT是每个转发节点的EMT之和。然后,以最小化组播树的EMT为目标,提出了一种概率可靠的按需组播(PROD)协议。仿真结果表明,与现有方法相比,PROD将端到端丢包率降低了30%,将组播吞吐量提高了25%。此外,它将每个数据包的传输次数减少了40%,从而显著降低了多播会话的网络开销。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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