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VoIP with IPv6 Packet Transmission over WLAN

机译:通过WLAN进行IPv6数据包传输的VoIP

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摘要

In the recent years, Voice over Internet Protocol (VoIP) is the most popular technology and becomes a kind of killer application, and 802.11based wireless Local Area network (WLAN) has been set up in many public places. People who use VoIP over WLAN can be more convenient In the common WLANs, IEEE 802.11e WLAN can support VoIP with better Quality of Service (QoS), However, 802.11 lacks a flexible mechanism to adapt to the varying wireless channel condition. The idea of this research project is to promote the use of VoIP that uses IPv6 and to exploit the IP protocols over WLAN (Wireless Local Area Network). Specifically, we show a cross-layer framework for design of wireless networks to support delay-critical applications, such as conversational voice or realtime video. The framework incorporates adaptation across all layers of the protocol stack to leverage the flexibility offered by joint optimization of design parameters. There are several network features that can be exploited to minimize delay, reduce delay, and maximize performance. With the assistant of the active scheme, it can be avoid the longest phase that IEEE 802.11 will enter. And implement a policy-based 802.11e WLAN to protect the right of user who has applied real-time services,
机译:近年来,互联网协议语音(VoIP)是最流行的技术,并且成为一种杀手级应用,并且在许多公共场所已经建立了基于802.11的无线局域网(WLAN)。在WLAN上使用VoIP的人们可以更加方便。在常见的WLAN中,IEEE 802.11e WLAN可以以更高的服务质量(QoS)支持VoIP,但是802.11缺乏灵活的机制来适应变化的无线信道条件。该研究项目的目的是促进使用IPv6的VoIP的使用,并利用WLAN(无线局域网)上的IP协议。具体而言,我们展示了一种用于设计无线网络的跨层框架,以支持对延迟至关重要的应用程序,例如对话语音或实时视频。该框架在协议栈的所有层上都集成了自适应功能,以利用联合优化设计参数所提供的灵活性。可以利用多种网络功能来最大程度地减少延迟,减少延迟并最大化性能。借助主动方案的帮助,可以避免IEEE 802.11进入的最长阶段。并实施基于策略的802.11e WLAN,以保护已应用实时服务的用户的权利,

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