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Voice capacity of IEEE 802.11b, 802.11a and 802.11g wireless LANs

机译:IEEE 802.11b,802.11a和802.11g无线局域网的语音容量

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IEEE 802.11 based wireless local area networks (WLANs) are becoming popular in home, enterprise and public access areas primarily due to their low cost, simplicity of installation and high data rates. While WLANs continue to be predominantly data centric, there is growing interest in using WLANs for voice, especially in enterprise markets. This paper presents new analytical and simulation results for the conversational speech capacity of WLANs and compares the different WLAN technologies in that regard. Specifically, we consider IEEE 802.11b, 802.11a and 802.11g systems in the infrastructure mode and find that voice capacity is a strong function of the channel bandwidth, codec packetization interval, data traffic and the packet size used by data. For the IEEE 802.11g system, we find that capacity depends on the CTS-to-self and RTS-CTS legacy protection mechanisms, with the RTS-CTS mechanism achieving lower capacity. We show that the analytical results are in close agreement with those from simulations and conclude the paper by highlighting some key factors that dictate the capacity of WLANs.
机译:基于IEEE 802.11的无线局域网(WLAN)主要由于其低成本,安装简单和高数据速率而在家庭,企业和公共访问区域中变得越来越流行。尽管WLAN继续主要以数据为中心,但人们越来越关注使用WLAN进行语音传输,尤其是在企业市场中。本文介绍了WLAN会话语音容量的新分析和仿真结果,并在这方面比较了不同的WLAN技术。具体来说,我们在基础架构模式下考虑IEEE 802.11b,802.11a和802.11g系统,发现语音容量是信道带宽,编解码器分组间隔,数据流量和数据使用的分组大小的重要函数。对于IEEE 802.11g系统,我们发现容量取决于CTS-to-self和RTS-CTS传统保护机制,而RTS-CTS机制实现的容量较低。我们表明分析结果与仿真结果非常吻合,并通过重点说明决定WLAN容量的一些关键因素来总结本文。

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