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RBTP: Low-Power Mobile Discovery Protocol through Recursive Binary Time Partitioning

机译:RBTP:通过递归二进制时间划分的低功耗移动发现协议

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With increasing prevalence of mobile wireless devices with WiFi and Bluetooth capability, new applications that can make use of limited contact opportunities when the devices are physically close are emerging. Proximity-based social networking, and location specific dissemination of advertisements and events, are some such applications. Discovering such services is a challenging problem due to energy budget limitations, user mobility, and nonuniformity and the time-varying nature of energy budgets across users. It is important to rapidly discover such mobile services to make use of limited contact opportunities. To support such applications, we seek to design a localized discovery scheme that can minimize the expected contact latency between mobile phones with limited energy budgets. All the existing neighbor discovery schemes assume lack of any time synchronization. However, in practice sufficiently accurate time synchronization can be achieved with existing time synchronization techniques. We propose Recursive Binary Time Partitioning (RBTP), a scheme that determines how the devices should wake up and sleep to achieve minimal contact latency with other nearby devices. RBTP achieves provable performance bound and outperforms state-of-the-art asynchronous protocols for smartphones. When compared with the optimum scheme, the contact latency is shown to be within a factor of $(9/8)$ in the expected case and 2 in the worst case.
机译:随着具有WiFi和蓝牙功能的移动无线设备的普及,出现了一些新的应用程序,这些应用程序在设备物理接近时可以利用有限的联系机会。这样的应用就是基于接近度的社交网络以及针对位置的广告和事件的传播。由于能源预算限制,用户移动性以及用户之间能源预算的不均匀性和时变性质,发现这样的服务是一个具有挑战性的问题。快速发现此类移动服务以利用有限的联系机会非常重要。为了支持此类应用,我们寻求设计一种本地化的发现方案,该方案可以在能源预算有限的情况下最小化移动电话之间的预期联系等待时间。所有现有的邻居发现方案都假定缺少任何时间同步。但是,实际上,可以使用现有的时间同步技术来实现足够准确的时间同步。我们提出了递归二进制时间分区(RBTP),一种确定设备如何唤醒和休眠以实现与附近其他设备的最小联系延迟的方案。 RBTP达到了可证明的性能极限,并且优于智能手机的最新异步协议。当与最佳方案进行比较时,在预期情况下,接触等待时间显示为在(9/8)$的范围内,而在最坏情况下则为2。

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