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Power-Efficient Communication Protocol for Integrated WWAN and WLAN

机译:集成WWAN和WLAN的节能通信协议

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One of the most impending requirements to support a seamless communication environment in heterogeneous wireless networks comes from the limited power supply of small-size and low-cost mobile terminals as in stand-alone WLANs or cellular networks. Thus, it is a challenge to design new techniques so that mobile terminals are able to not only maintain their active connection as they move across different types of wireless networks, but also minimize their power consumption. There have been several efforts aimed at having mobile devices equipped with multiple interfaces connect optimally to the access network that minimizes their power consumption. However, a study of existing schemes for WLAN notes that in the idle state, a device with both a WLAN and a WWAN interface needs to keep both interfaces on in order to receive periodic beacon messages from the access point (AP: WLAN) and downlink control information from the base station (WWAN), resulting in significant power consumption. Therefore, in this paper, we propose a power-efficient communication protocol (PCP) that includes turning off the WLAN interface after it enters the idle state and using the paging channel of WWAN in order to wake up the WLAN interface when there is incoming long-lived multimedia data. This scheme is known to limit the power consumption, while at the same time, it makes use of the paging channel in cellular networks. Further, our proposed scheme is designed to avoid repeatedly turning on and off WLAN interfaces, that consumes a significant amount of power. We propose turning on the WLAN interface when the number of packets in the radio network controller (RNC)'s buffer reaches a certain threshold level. The tradeoffs between the power saving and the number of packets dropped at the buffer are investigated analytically through the study of an on/off traffic model. Simulation results for scenarios of interest are also provided.
机译:在异构无线网络中支持无缝通信环境的最迫切需求之一来自像独立WLAN或蜂窝网络中那样的小型,低成本移动终端的有限电源。因此,设计新技术是一个挑战,使得移动终端不仅能够在它们跨不同类型的无线网络移动时保持其活动连接,而且还能使其功耗最小化。已经进行了一些努力,以使配备有多个接口的移动设备最佳地连接到接入网络,以最大程度地降低其功耗。但是,对现有WLAN方案的研究表明,在空闲状态下,同时具有WLAN和WWAN接口的设备需要保持两个接口均处于打开状态,以便从接入点(AP:WLAN)和下行链路接收定期的信标消息来自基站(WWAN)的控制信息,导致大量功耗。因此,在本文中,我们提出了一种高效节能的通信协议(PCP),该协议包括在进入空闲状态后关闭WLAN接口并使用WWAN的寻呼信道,以便在有长时间传入的情况下唤醒WLAN接口。实时多媒体数据。已知该方案限制了功耗,同时,它利用了蜂窝网络中的寻呼信道。此外,我们提出的方案旨在避免重复打开和关闭WLAN接口,这会消耗大量功率。我们建议在无线网络控制器(RNC)的缓冲区中的数据包数量达到某个阈值水平时打开WLAN接口。通过研究开/关流量模型,可以分析节能和在缓冲区丢弃的数据包数量之间的折衷。还提供了感兴趣场景的仿真结果。

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