无线局域网中IEEE802.11ax和802.11ac MIMOLink的性能比较分析

Md. Delowar Hossain, Sumon Kumar Debnath, Iffat Ara Badhan, Md. Monirul Islam, Ad. Ahsan Habib, Md. Sharif Uddin, Md. Abul Munjer, Prodip Kumar Sarker, Ileas Pramanik, Mutia Afroze Alin
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摘要

对快速和可靠的无线互联网接入的不断增长的需求刺激了802.11无线局域网内各种协议的发展。其中,802.11ac协议在过去几年中获得了广泛的接受,与802.11n标准相比,它提供了更高的数据传输速率。然而,无线物联网设备的持续拥堵,特别是在人口密集地区,仍然是一个重大挑战。为了解决这个问题,IEEE 802.11改进了IEEE 802.11ax作为802.11ac的继承者,在PHY/MAC层引入了关键的增强功能,以提高密集场景中的吞吐量。此外,对这些协议进行建模和仿真对于WLAN研究人员和设计人员有效地预测链路特性、促进高性能WLAN设计至关重要。对这些工具的需求导致了各种网络模拟程序的创建,NS-2被广泛接受为一个开源程序,在研究中取得了显著的成功。在本文中,我们通过NS-3仿真重点研究了802.11ax wlan的各种连接特性,包括mcs、键合信道、GI、数据编码、天线、数据速率、链路距离、Tx/Rx功率、增益和有效载荷大小。我们还将它们的性能与802.11ac进行了比较,这表明NS-3准确地支持大多数802.11ax功能,并在各种场景中优于802.11ac。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Performance Analysis of the IEEE802.11ax and 802.11ac MIMOLink for WLANs
The escalating demand for swift and dependable wireless internet access has spurred the development of various protocols within 802.11 WLANs. Among them, the 802.11ac protocols have gained widespread acceptance over the past few years, offering enhanced data transfer rates compared to the 802.11n standard. However, the persistent congestion of wireless IoT devices, particularly in densely populated areas, remains a significant challenge. To tackle this issue, IEEE 802.11 has advanced IEEE 802.11ax as the successor to 802.11ac, introducing critical enhancements at the PHY/MAC layers to improve throughput in dense scenarios. Additionally, modelling and simulating these protocols are vital for WLAN researchers and designers to anticipate link characteristics effectively, fostering high-performance WLAN design. The need for such tools led to the creation of diverse network simulation programs, and NS-2 is widely accepted as an open-source program that has achieved remarkable success in research. In this paper, we focus on various connection properties of 802.11ax WLANs through NS-3 simulations, including MCSs, bonded channels, GI, data encoding, antennas, data rates, link distance, Tx/Rx power, gain, and payload size. We also compare their performance against 802.11ac, which demonstrates that NS-3 accurately supports most 802.11ax capabilities and outperforms 802.11ac in various scenarios.
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