A safe multiple access-rates transmission (SMART) scheme for IEEE 802.11 wireless networks

Shiann-Tsong Sheu, Jenhui Chen, Hsueh-Wen Tseng, Hsien-Ta Chiang
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引用次数: 8

Abstract

The IEEE 802.11 standard and enhanced amendments have defined fourteen transmission rates (1/2/5.5/6/9/11/12/18/22/24/33/36/48/54 Mbit/s) for mobile stations to transmit and receive data frames. With the characteristic of modulation schemes, a higher level modulation scheme requires a higher signal-to-noise ratio (SNR) and, consequently, the data rate is inversely proportional with the transmission distance. Using a higher level modulation scheme, a higher network throughput can be expected; however, the frame error probability will also become higher. Doubtlessly, it is an open issue of selecting a proper modulation scheme for a pair of mobile stations in a time-varying indoor environment. This paper proposes a safe multiple access-rates transmission (SMART) scheme for enhancing the reliability of data transmission in the IEEE 802.11 multi-rate infrastructure wireless networks. The SMART scheme provides reliable transmission by reserving a retransmission period, which immediately follows the transmitted frame and is estimated from a lower transmission rate, for each transmitted frame. If any error occurs on the transmitted frame, the sender will retransmit it right away by using a lower transmission rate to make sure of successful retransmission. Otherwise, the reserved period will be taken by the access point (AP), which often has the longest waiting queue and is the bottleneck in infrastructure wireless networks. The efficiency of the proposed SMART scheme is evaluated by simulation. Simulation results show that the derived performance of the SMART scheme is significantly better than standard under the real environment with asymmetric traffic load.
一种用于IEEE 802.11无线网络的安全多访问速率传输(SMART)方案
IEEE 802.11标准及其增强修订版为移动站发送和接收数据帧定义了14种传输速率(1/2/5.5/6/9/11/12/18/22/24/33/36/48/54 Mbit/s)。由于调制方案的特性,更高电平的调制方案要求更高的信噪比(SNR),因此数据速率与传输距离成反比。使用更高级别的调制方案,可以预期更高的网络吞吐量;但是,帧错误概率也会变高。在时变的室内环境中,对一对移动台选择合适的调制方案无疑是一个有待解决的问题。为了提高IEEE 802.11多速率基础无线网络中数据传输的可靠性,提出了一种安全的多接入速率传输(SMART)方案。SMART方案通过为每个传输帧保留一个重传周期来提供可靠的传输,该重传周期紧跟在传输帧之后,由较低的传输速率估计。如果在传输帧上发生错误,发送方将立即用较低的传输速率重传,以确保重传成功。否则,预留时间将被接入点(AP)占用,AP通常具有最长的等待队列,是基础设施无线网络中的瓶颈。通过仿真验证了该方案的有效性。仿真结果表明,在非对称负载的真实环境下,SMART算法的性能明显优于标准算法。
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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