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Novel WLAN Coverage Area Estimation Leveraging Transition of Cellular Signal using Multi-mode Mobile Terminal for Heterogeneous

机译:新型WLAN覆盖区域估计利用蜂窝信号过渡使用多模移动终端进行异构

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It is necessary to select an appropriate access network out of the several available as well as perform vertical handover, which can be considered to be one of the key features of IMT-Advanced. We now have a dual-mode mobile terminal (MT) which can connect to both wireless LAN (WLAN) and cellular NWs, featuring a high transmission rate and wide coverage area, respectively. Before selecting and switching access NWs, it must detect the coverage areas of the access NWs that are candidates for connection. Since the MT is generally battery powered, it is a mandatory requirement to detect NWs without consuming too much power. Thus, the authors consider the possibility of controlling WLAN interface (I/F) activation solely by monitoring the transition of the signal quality of a cellular system. From some preliminary experiments and based on previous literature, it has been shown that the signal quality tends to rapidly degrade and then become more stable when moving into an indoor space, which is a different signal transition than that under fading circumstances. From the findings, in this paper, the authors introduce a radically new WLAN area estimation approach for such dual-mode MT leveraging the transition. The transition is used for the estimation of the movement from an outdoor cellular area into an indoor space, where the WLAN areas are expected. The MT activates the WLAN I/F only when it is deduced that the user is about to walk indoors. Furthermore, the authors introduce a method of ascertaining the deduction by leveraging the GPS signal. Thus, the proposed approach adopts a completely different concept from existing ones which require changes to existing NWs or keeping the WLAN I/F active for WLAN area detection. Experimental results and analysis show that the proposed approach has huge potential for reducing the amount of power consumed in detecting the coverage area compared to continuous or periodic search of the WLAN area while keeping the I/F active.
机译:有必要从几种可用的可用和执行垂直切换中选择适当的接入网络,这可以被认为是IMT-Advanced的关键特征之一。我们现在具有双模移动终端(MT),其可以连接到无线LAN(WLAN)和蜂窝NW,分别具有高传输速率和宽覆盖区域。在选择和切换访问NW之前,它必须检测访问NW的覆盖区域,这些区域是用于连接的候选者。由于MT一般是电池供电,因此强制要求检测NWS而不会消耗太大的功率。因此,作者考虑了通过监视蜂窝系统的信号质量的转换来控制WLAN接口(I / F)激活的可能性。从一些初步实验和基于先前的文献,已经表明,当进入室内空间时,信号质量趋于快速降低,然后变得更稳定,这是一种与衰落情况下的信号过渡。从调查结果,在本文中,作者介绍了利用过渡的这种双模MT的根本新的WLAN区域估计方法。该转变用于估计从室外蜂窝区域的运动进入室内空间,其中WLAN区域是预期的。只有在推断用户即将在室内行走时,才会激活WLAN I / F。此外,作者介绍了一种通过利用GPS信号来确定扣除的方法。因此,所提出的方法采用完全不同的概念,这些概念需要改变现有的NW或保持WLAN I / F为WLAN区域检测。实验结果和分析表明,与WLAN区域的连续或周期性搜索相比,该方法具有巨大的潜力,用于减少覆盖区域的覆盖区域消耗的功率量,同时保持I / F活动。

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