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Enhancing Campus VoIP Service for Ubiquitous Communication on Dual-Mode Mobile Handsets

机译:加强校园VoIP服务,以了解双模移动手机上无处不在的通信

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In this paper, we consider a university campus that has an established infrastructure for supporting SIP-based VoIP service through the campus wireless data network. The campus WLAN, however, does not have 100% full coverage, and hence users cannot make untethered VoIP calls anywhere on campus. The goal of this paper is to overcome the limitations of such WLAN dead spots and improve user experience when making VoIP calls. Different from related work that relies on peer-to-peer communication for multi-hop relay, we propose an approach called "dual-mode communication" to leverage the availability of dual-mode handsets for ubiquitous communication on campus. We implement the proposed approach and evaluate its performance in the campus testbed environment. We find that an opportunistic usage of dual communication modes on mobile handsets does allow ubiquitous voice communication in WLAN dead spots. However, it has one problem as the potential lack of voice call continuity during handoff between the two modes that can cause degradation of the speech quality. We adopt a cross-layer solution based on signal processing algorithms to address the problem, thus achieving seamless voice call continuity while enabling ubiquitous voice communication on campus. Testbed evaluations show promising results for future research along the proposed direction.
机译:在本文中,我们认为有责任通过校园无线数据网络支持基于SIP的VoIP服务的完善的基础设施大学校园。校园WLAN,但是没有100%全覆盖,因此用户无法在校园内随时随地不受限制的VoIP呼叫。本文的目的是为了克服这样的WLAN死点的局限性,使VoIP通话时,为了提高用户体验。从依赖于多跳中继对等网络通信相关工作不同的是,我们提出了所谓的“双模通信”利用双模手机的可用性在大学校园里无处不在的通信的方法。我们实施建议的方法,并评估其在校园的测试平台环境中的性能。我们发现,双通信模式在手机上的机会使用确实允许在WLAN死角无处不在的语音通信。但是,它有一个问题,因为这两种模式可能会导致语音质量的下降之间的切换过程中的潜在缺乏语音呼叫连续性的。我们采用基于信号处理算法来解决这个问题,从而实现无缝语音呼叫连续性而在校园使得无处不在的语音通信的跨层溶液。测试平台的评估显示未来沿建议方向的研究有前途的结果。

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