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Throughput Improvement Via Smart Antenna and Link Adaptation Scheme for IEEE 802.11A Systems

机译:IEEE 802.11a系统智能天线的吞吐量改进和IEEE 802.11a系统的链路自适应方案

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Propagation delay spread and inter-symbol interference impact the transmission performance of WLAN systems. This paper presents performance enhancement using beamforming techniques operated at the access point. The performance by using omni-directional, switched beam system and phase array system in an indoor office are analyzed and compared. Based on the IEEE 802.11a physical layer specification, numerical simulations indicate that adopting directional antennae at the access point can increase diversity gain in non-line-of-sight propagations channels, while the packet error rate remains below 10-2. Besides, this paper also presents a link adaptation algorithm, based on the Ricean k-factor and signal to noise ratio, for throughput enhancement in IEEE 802.11a systems. Simulation results show that the average throughput reaches 33.7 Mbps in the signal-strength-based conventional algorithm, but rises to 43.1 Mbps when adopting the proposed scheme
机译:传播延迟扩展和符号间​​干扰会影响WLAN系统的传输性能。本文介绍了使用在接入点处运行的波束成形技术的性能增强。分析了在室内办公室中使用全方位,开关光束系统和相位阵列系统的性能。基于IEEE 802.11a的物理层规范,数值模拟表明,在接入点处采用定向天线可以提高非视线上的分集增益,而分组错误率保持低于10 -2 < / sup>。此外,本文还提出了一种基于Ricean K因子和信噪比的链路自适应算法,用于IEEE 802.11a系统中的吞吐量增强。仿真结果表明,在采用所提出的方案时,平均吞吐量在信号强制常规算法中达到33.7 Mbps,但在采用拟议方案时上升至43.1 Mbps

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