分时无线分组数据信道上的分组话音业务容量

Patrick Hosein
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引用次数: 34

摘要

在传统的CDMA无线网络中,实时业务,如电路交换语音,由于其严格的延迟要求,通过同步信道在空中传输。在第三代网络(3G)中,IxEV-DV [A]。[j]。Dahlman et al., 1998],在转发链路上引入了一个额外的时间共享通道,以支持延迟要求不那么严格的数据服务。IxEV-DO [P]Bender等人,2000]标准提供了一个单一的分时转发链路通道,没有同步通道,因为它主要是为数据服务设计的。最近有人建议某些语音服务(例如……IP语音(VoIP)和一键通(PTT)可以在这种分时信道上有效地传输,因为与电路交换语音相比,它们对延迟的要求不那么严格。在本文中,我们研究了VoIP用户在这些分时信道上的容量,并研究了对各种基站(BS)和移动站(MS)设计参数、算法和特征的敏感性。请注意,没有提供每个标准的详细模拟,而是使用比较方法来研究每个标准的具体特征。我们的重点是前向信道,因为在反向链路上执行码分复用,因此实现了相当的用户容量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Capacity of packetized voice services over time-shared wireless packet data channels
In traditional CDMA wireless networks, real-time services, such as circuit-switched voice, are transported over the air via synchronous channels because of their stringent delay requirements. In the third generation networks (3G), IxEV-DV [A.Soong et al., 2003] and HSDPA [E. Dahlman et al., 1998], an additional time shared channel was introduced on the forward link to support data services for which delay requirements are less stringent. The IxEV-DO [P. Bender et al., 2000] standard provides a single time-shared forward link channel and no synchronous channels since it was designed primarily for data services. It has recently been suggested that certain voice services (e.g.. Voice over IP (VoIP) and push-to-talk (PTT)), can be efficiently transported over such time-shared channels since they have less stringent delay requirements compared to circuit-switched voice. In this paper we investigate the capacity of VoIP users over these time-shared channels and investigate the sensitivity to various base station (BS) and mobile station (MS) design parameters, algorithms and features. Note that detailed simulations of each standard is not provided but rather a comparative approach is used whereby we investigate specific features of each standard. Our focus is on the forward channel since code division multiplexing is performed in the reverse link and hence comparable user capacities are achieved.
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