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首页> 外文期刊>Journal of communications and networks >Does Higher Datarate Perform Better in IEEE 802.11-based Multihop Ad Hoc Networks?
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Does Higher Datarate Perform Better in IEEE 802.11-based Multihop Ad Hoc Networks?

机译:更高的数据速率在基于IEEE 802.11的多跳Ad Hoc网络中性能更好吗?

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摘要

Due to the nature that high datarate leads to shorter transmission range, the performance enhancement by high datarate 802.11 WLANs may be degraded when applying high datarate to an 802.11 based multihop ad hoc network. In this paper, we evaluate, through extensive simulations, the performance of multihop ad hoc networks at multiple transmission datarates, in terms of the number of hops between source and destination, throughput, end-to-end delay and packet loss. The study is conducted based on both stationary chain topology and mesh topologies with or without node mobility. From numerical results on network performance based on chain topology, we conclude that there is almost no benefit by applying the highest datarate when the chain length is 6 hops or more. With node mobility in mesh topology, the benefit of using high datarate diminishes at even shorter number of hops. To explore the main reasons for this behavior, analyses on multihop end-to-end throughput and network k-connectivity have been conducted later in the paper, and correspondingly an auto-rate adaptation algorithm has been proposed.
机译:由于高数据速率会导致较短的传输范围,因此,将高数据速率应用于基于802.11的多跳ad hoc网络时,高数据速率802.11 WLAN的性能增强可能会降低。在本文中,我们通过广泛的仿真,根据源与目的地之间的跳数,吞吐量,端到端延迟和数据包丢失,评估了多跳ad hoc网络在多种传输数据速率下的性能。该研究是基于固定链拓扑和具有或不具有节点移动性的网格拓扑进行的。根据基于链拓扑的网络性能的数值结果,我们得出结论,当链长为6跳或更多时,应用最高的数据速率几乎没有任何好处。随着网状拓扑中节点移动性的提高,使用高数据速率的优势甚至在更短的跳数上也会减少。为了探究这种现象的主要原因,本文稍后将对多跳端到端吞吐量和网络k连接性进行分析,并提出了一种自动速率自适应算法。

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