基于信噪比的无线网状网络自适应发送速率

S. Fowler, M. Eberhard, K. Blow, A. Shaikh
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引用次数: 19

摘要

无线网状网络(WMNs)已成为下一代无线网络的一项关键技术。wmn不是另一种类型的ad-hoc网络,而是使ad-hoc网络的功能多样化。在WMNs上工作的几个协议包括IEEE 802.11a/b/g、802.15、802.16和LTE-Advanced。为了在不同条件下实现高吞吐量,这些协议必须调整其传输速率。本文提出了一种利用丢包和物理层条件对多包传输进行速率自适应以改善信道条件的方案。动态监控、多包传输以及根据一定的优化标准调整包传输速率以适应信道质量的变化,提供了更大的吞吐量。该方法的主要特点是结合了以下两个因素:1 .通过标准偏差测量噪声与信号比的波动来检测固有信道状况;2 .检测由拥塞引起的丢包。作者表明,在WMN中使用这些技术可以显着提高数据包发送速率的性能。通过分组级仿真,在无线网络仿真平台上验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Sending Rate Over Wireless Mesh Networks Using SNR
Wireless Mesh Networks WMNs have emerged as a key technology for the next generation of wireless networking. Instead of being another type of ad-hoc networking, WMNs diversify the capabilities of ad-hoc networks. Several protocols that work over WMNs include IEEE 802.11a/b/g, 802.15, 802.16 and LTE-Advanced. To bring about a high throughput under varying conditions, these protocols have to adapt their transmission rate. This paper proposes a scheme to improve channel conditions by performing rate adaptation along with multiple packet transmission using packet loss and physical layer condition. Dynamic monitoring, multiple packet transmission and adaptation to changes in channel quality by adjusting the packet transmission rates according to certain optimization criteria provided greater throughput. The key feature of the proposed method is the combination of the following two factors: 1 detection of intrinsic channel conditions by measuring the fluctuation of noise to signal ratio via the standard deviation, and 2 the detection of packet loss induced through congestion. The authors show that the use of such techniques in a WMN can significantly improve performance in terms of the packet sending rate. The effectiveness of the proposed method was demonstrated in a simulated wireless network testbed via packet-level simulation.
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