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Tula: Balancing Energy for Sensing and Communication in a Perpetual Mobile System

机译:图拉:平衡永久移动系统中的传感和通信能量

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Due to advances in low power sensors, energy harvesting, and disruption tolerant networking, we can now build mobile systems that operate perpetually, sensing and streaming data directly to scientists. However, factors such as energy harvesting variability and unpredictable network connectivity make building robust and perpetual systems difficult. In this paper, we present a system, Tula, that balances sensing with data delivery, to allow perpetual and robust operation across highly dynamic and mobile networks. This balance is especially important in unpredictable environments; sensing more data than can be delivered by the network is not useful, while gathering less underutilizes the system's potential. Tula is decentralized, fair and automatically adapts across different mobility patterns. We evaluate Tula using mobility and energy traces from TurtleNet—a mobile sensor network we deployed to study Gopher tortoises—and publicly available traces from the UMass DieselNet testbed. Our evaluations show that Tula senses and delivers data at up to 85 percent of an optimal, oracular system that perfectly replicates data and has foreknowledge of future energy harvesting. We also demonstrate that Tula can be implemented on a small microcontroller with modest code, memory, and processing requirements.
机译:由于低功耗传感器,能量收集和容错网络的进步,我们现在可以构建永久运行的移动系统,直接将数据感应并流式传输给科学家。但是,诸如能量收集可变性和不可预测的网络连接之类的因素使构建健壮且永久的系统变得困难。在本文中,我们提出了一个图拉系统,该系统在传感与数据传递之间取得了平衡,以允许在高度动态和移动的网络中进行永久而强大的操作。在不可预测的环境中,这种平衡尤为重要。感测到的数据多于网络所能提供的数据,这是没有用的,而收集较少的数据则未充分利用系统的潜力。图拉是去中心化,公平的,并且可以自动适应不同的出行方式。我们使用TurtleNet(用于研究Gopher陆龟的移动传感器网络)的移动性和能量轨迹以及UMass DieselNet测试平台上公开的轨迹来评估Tula。我们的评估表明,图拉感应和传送的数据最多占最优的,可完美复制数据并预知未来能量收集的眼动系统的85%。我们还演示了Tula可以在具有适度代码,内存和处理要求的小型微控制器上实现。

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