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VoIP over DVB-RCS satellite systems: Trial results and the impact of adaptive speech coding using cross-layer design

机译:DVB-RCS卫星系统上的VoIP:使用跨层设计的试验结果和自适应语音编码的影响

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VoIP is one of the most popular applications on the Internet. The DVB-S2 (digital video broadcasting-satellite version 2) and DVB-RCS (digital video broadcasting-return channel satellite) standards provide the potential for reliable and efficient voice and data transfer over satellite networks. This is important, as satellites can play a role in broadband service provision by addressing the cases of limited terrestrial access such as in rural or under-served areas. The first part of this paper presents the results of our VoIP trials with different commercial DVB-S/RCS satellite offers and popular internet telephony and videoconferencing applications (Skype, MSN, etc.). These results reveal that packet delay and jitter are strongly affected by the satellite network component as well as the type of speech codec used. Accordingly, research presented in the second part of this paper is focused on dynamic speech coding rate control adapted to the conditions of the underlying network, in which the satellite domain presents the most challenging portion of the end-to-end path. For this purpose, a novel cross-layer mechanism is proposed to facilitate and increase the accuracy of the speech coding rate adaptation mechanism. Cross-layer design is a relatively new idea aiming to exploit information exchange among layers of the protocol stack. Our simulation analyses show that the proposed cross-layer mechanism can help us in optimally adjusting the speech coding rate to maintain the user-perceived quality in terms of MOS (mean opinion score) in the face of time-varying available satellite channel capacity.
机译:VoIP是Internet上最流行的应用程序之一。 DVB-S2(数字视频广播卫星版本2)和DVB-RCS(数字视频广播返回频道卫星)标准为通过卫星网络进行可靠而有效的语音和数据传输提供了潜力。这很重要,因为卫星可以通过解决地面访问受限的情况(例如在农村或服务不足的地区)来在宽带服务提供中发挥作用。本文的第一部分介绍了使用不同的商用DVB-S / RCS卫星产品以及流行的Internet电话和视频会议应用程序(Skype,MSN等)进行的VoIP试验的结果。这些结果表明,分组延迟和抖动受卫星网络组件以及所用语音编解码器类型的强烈影响。因此,本文第二部分提出的研究集中于适应基础网络条件的动态语音编码率控制,其中卫星域呈现了端到端路径中最具挑战性的部分。为此,提出了一种新颖的跨层机制以促进并提高语音编码率自适应机制的准确性。跨层设计是一个相对较新的思想,旨在利用协议栈各层之间的信息交换。我们的仿真分析表明,面对时变可用卫星信道容量,所提出的跨层机制可以帮助我们优化调整语音编码率,以保持用户感知的MOS(平均意见得分)质量。

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