Revealing transmit diversity mechanisms and their side-effects in commercial IEEE 802.11 cards

D. Giustiniano, I. Tinnirello, L. Scalia, A. Levanti
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引用次数: 13

Abstract

Service differentiation in WLAN has been traditionally faced at the MAC layer. However, some PHY layer parameters, such as the transmission power, the antenna, and the modulation/coding scheme, have a deep impact on network performance. Since the criterion for selecting these parameters is left to the vendor specific implementations, the performance spread of most experimental results about 802.11 WLAN could be affected by vendor proprietary schemes. The focus of this paper is an experimental analysis of the undisclosed antenna diversity mechanisms employed by some widely used cards (namely, the Atheros and Intel based cards), and a thorough understanding of the optimization goals which guided their design. Although these mechanisms have been introduced for improving the transmission robustness to fading, we proved that they may have dramatic side- effects on link performance, whenever the available antennas are not homogeneous.
揭示了商用IEEE 802.11卡的传输分集机制及其副作用
传统上,WLAN的业务分化主要在MAC层进行。然而,物理层的一些参数,如传输功率、天线和调制/编码方案,对网络性能有很大的影响。由于选择这些参数的标准留给了供应商特定的实现,因此大多数关于802.11 WLAN的实验结果的性能分布可能受到供应商专有方案的影响。本文的重点是对一些广泛使用的卡(即Atheros和Intel卡)所采用的未公开的天线分集机制进行实验分析,并深入了解指导其设计的优化目标。虽然这些机制已经被引入来提高传输对衰落的鲁棒性,但我们证明,当可用的天线不是均匀的时候,它们可能会对链路性能产生巨大的副作用。
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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