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VoIP Capacity—Analysis, Improvements, and Limits in IEEE 802.11 Wireless LAN

机译:VoIP容量— IEEE 802.11无线局域网中的分析,改进和限制

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摘要

Wireless voice over internet protocol (VoIP) is an important emerging service in telecommunication due to its potential for replacing cell phone communication wherever a wireless local area network (WLAN) is installed. Recent studies, however, suggest that the number of voice calls that can be supported in the widely deployed IEEE 802.11 WLAN is limited. In this paper, we utilize a so-called transmission opportunity (TXOP) parameter of a medium access control (MAC) protocol as a simple solution to improve the VoIP capacity. We provide a detailed analytical model to show that the capacity can significantly be improved and discuss the implications of the TXOP parameter in terms of the maximum number of calls the IEEE 802.11 network can support. The analytical results are validated by simulations for a wide range of parameters. Furthermore, we investigate the impact of the buffer at the access point (AP) on the number of obtainable voice calls. We show that there exists an optimal buffer size where the maximum voice capacity is achieved, but further increasing the buffer beyond this value will not result in an increased voice capacity. Based on this finding, a closed-form expression for the maximum number of voice calls is developed as a function of the TXOP value. Finally, we propose a simple yet accurate approximation for voice-capacity estimation and provide some insights gained from the approximation.
机译:互联网无线语音协议(VoIP)是电信中一项重要的新兴服务,因为它有可能取代安装无线局域网(WLAN)的任何地方的手机通信。但是,最近的研究表明,在广泛部署的IEEE 802.11 WLAN中可以支持的语音呼叫数量是有限的。在本文中,我们利用媒体访问控制(MAC)协议的所谓传输机会(TXOP)参数作为提高VoIP容量的简单解决方案。我们提供了详细的分析模型,以表明可以显着提高容量,并就IEEE 802.11网络可以支持的最大呼叫数来讨论TXOP参数的含义。通过模拟验证了各种参数的分析结果。此外,我们调查了接入点(AP)缓冲区对可获得的语音呼叫数量的影响。我们显示,存在一个达到最大语音容量的最佳缓冲区大小,但是将缓冲区进一步增加到该值以上将不会导致语音容量增加。基于此发现,将语音呼叫的最大数量的封闭式表达式开发为TXOP值的函数。最后,我们提出了一种简单而准确的语音容量估算方法,并提供了一些从估算方法中获得的见识。

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