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Exploring passenger dynamics and connectivities in Beijing underground via bluetooth networks

机译:通过蓝牙网络探索北京地下的乘客动态和连通性

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Unlike traditional opportunistic networks characterized by relatively very short connectivity period among mobile devices during their contacts, in this paper, we explicitly consider the underground/bus scenario where the inherited structured mobility pattern enforces more stable passenger behaviors. If with the aid of potential formation of Bluetooth-enabled multi-hop wireless networks, one can expect a type of new emerging applications for passengers on the move. In particular, we conducted a thorough experimental study on passenger dynamics and connectivities in Beijing Underground during peak hours, via building an information collection application in an Android-based smartphone. From the total of 41,806 records for 120 days, we have performed extensive analysis on a variety of statistics for the number of neighbors, the lifetime of the neighbors, the received signal strength indicator (RSSI) and its derived physical distance, flow speed of the nearby passengers, battery usage rate, etc. Then, we further prove our justification that Bluetooth is the perfect technology to build up a relatively small multi-hop wireless network with the network size of four nodes, and in particular it is applicable and may fundamentally drive new applications in an underground environment during the peak hour, where two notable examples are music album sharing and neighborhood gaming.
机译:与传统的机会主义网络的特点是,移动设备之间在联系期间的连接时间相对较短,我们在本文中明确考虑了地下/公交车场景,其中继承的结构化移动性模式强制了更稳定的乘客行为。如果借助可能形成蓝牙的多跳无线网络的形成,人们可以期待出行旅客的一种新兴应用。特别是,我们通过在基于Android的智能手机中构建信息收集应用程序,对北京地铁在高峰时段的乘客动态和连通性进行了全面的实验研究。从120天的41,806条记录中,我们对邻居的数量,邻居的寿命,接收信号强度指示器(RSSI)及其派生的物理距离,流量的各种统计数据进行了广泛的分析。然后,我们进一步证明我们的理由:蓝牙是建立相对较小的多跳无线网络(具有四个节点的网络大小)的理想技术,尤其适用且可能从根本上讲在高峰时段在地下环境中驱动新应用程序,其中两个著名的例子是音乐专辑共享和社区游戏。

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