基于多轮询博弈论的IEEE 802.11网络中的TCP性能

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Electrical Control and Communication Engineering Pub Date : 2016-12-01 DOI:10.1515/ecce-2016-0010
Tomas Cuzanauskas, A. Anskaitis
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引用次数: 1

摘要

易于使用和集成各种应用程序使IEEE 802.11成为当今最常用的技术之一,无论是在家庭还是在商业场所。在过去的几年中,802.11标准已经有了许多额外的改进。然而,算法和媒体访问控制(MAC)层的方法与以前的Wi-Fi版本几乎相同。本文提出了一套提高系统总容量的方法,如基于博弈论和自定义无线介质协议的高效发射功率管理。通过仿真和实际应用场景验证了传输功率管理和无线介质协议的有效性。结果表明,拟议的无线媒体协议的容量总体上比标准802.11无线媒体接入协议高20%。附加的TCP确认过滤与提议的无线介质访问协议一起进行了测试,可以在高密度场景中提供高达10%的TCP吞吐量,特别是在不对称流量情况下。进行的研究表明,有效的电源管理可能导致更轻的传输功率分配规则,目前由当地监管机构为当前的Wi-Fi设备设置。因此,更好的传播特性和无线介质管理将导致整体更高的无线系统容量。
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TCP Performance in Multi-Polling Game Theory-Based IEEE 802.11 Networks
Abstract Easy usage and integration with various applications made IEEE 802.11 one of the most used technologies these days, both at home and business premises. Over the years, there have been many additional improvements to the 802.11 standards. Nevertheless, the algorithms and Media Access Control (MAC) layer methods are almost the same as in previous Wi-Fi versions. In this paper, a set of methods to improve the total system capacity is proposed – such as efficient transmit power management based on Game Theory with a custom wireless medium protocol. The transmit power management and wireless medium protocol is verified by both simulation and real application scenarios. The results conclude that the capacity of the proposed wireless medium protocol is overall 20 percent higher than the standard 802.11 wireless medium access protocols. Additional TCP Acknowledgment filtering, which was tested together with the proposed wireless medium access protocol, can provide up to 10-percent-higher TCP throughput in high-density scenarios, especially for asymmetrical traffic cases. The conducted research suggests that efficient power management could result in lighter transmit power allocation rules that are currently set by the local regulators for current Wi-Fi devices. Thus, better propagation characteristics and wireless medium management would lead to an overall higher wireless system capacity.
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来源期刊
Electrical Control and Communication Engineering
Electrical Control and Communication Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
自引率
14.30%
发文量
0
审稿时长
12 weeks
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