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Throughput and delay analysis for IEEE 802.11 multi-hop networks considering data rate

机译:考虑数据速率的IEEE 802.11多跳网络的吞吐量与延迟分析

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In an IEEE 802.11 Distributed Coordination Function–based wireless network with multiple hops, a node operates on its own with several predefined data rates (i.e. following modulation and coding schemes). Moreover, the IEEE 802.11 Distributed Coordination Function node’s communication is characterized by transmission and carrier-sensing distances. The transmission one is, in general, reverse proportional to the data rate. Meanwhile, the carrier distance keeps constant regardless of the modulation and coding scheme. Therefore, when a node has a high transmission rate, within its carrier-sensing range, the number of nodes may increase. The previous works have not yet extensively investigated the impact of data rates on such a scenario. This article addresses that issue aiming to quantify the network performance of the multi-hop IEEE 802.11 networks. As a solution, we propose the mathematical expressions, which consider data rates, for end-to-end throughputs, as well as delays in the network with string topology. We confirm the expressions’ correctness by presenting the quantitative agreements between the analytical and simulation results.
机译:在具有多跳的基于IEEE 802.11的基于IEEE 802.11分布式协调功能的无线网络中,节点以其其自身操作,具有几个预定义的数据速率(即,在调制和编码方案之后)。此外,IEEE 802.11分布式协调功能节点的通信的特征在于传输和载波感测距离。通常,传输是与数据速率成比例的。同时,无论调制和编码方案如何,载波距离都保持恒定。因此,当节点具有高传输速率时,在其载波感测范围内时,节点的数量可能会增加。以前的作品尚未广泛调查数据率对这种情况的影响。本文解决了旨在量化多跳IEEE 802.11网络的网络性能的问题。作为解决方案,我们提出了考虑数据速率的数学表达式,用于端到端吞吐量,以及具有字符串拓扑的网络中的延迟。我们通过在分析和仿真结果之间呈现定量协议来确认表达式的正确性。

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