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Software-driven Sensor Networks For Short-range Shallow Water Applications

机译:用于短程浅水应用的软件驱动的传感器网络

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摘要

Most existing underwater networks target deep and long range oceanic environments, which has led to the design of power hungry and expensive underwater communication hardware. Because of prohibitive monetary and energy cost of currently over-engineered communication hardware, dense deployments of shallow water sensor networks remain an elusive goal. To enable dense shallow water networks, we propose a network architecture that builds on the success of terrestrial sensor motes and that relies on the coupling of software modems and widely available speakers and microphones in sensor motes to establish acoustic communication links. In this paper, we analytically and empirically explore the potential of this acoustic communication system for the underwater environment. Our experimental approach first profiles the hardware in water after waterproofing the components with elastic membranes. The medium profiling results expose the favorable frequencies of operation for the hardware, enabling us to design a software FSK modem. Subsequently, our experiments evaluate the data transfer capability of the underwater channel with 8-frequency FSK software modems. The experiments within a 17 × 8 m controlled underwater environment yield an error-free channel capacity of 24 bps, and they also demonstrate that the system supports date rates between 6 and 48 bps with adaptive fidelity.
机译:现有的大多数水下网络都针对深远距离的海洋环境,这导致了设计耗电且昂贵的水下通信硬件的设计。由于当前过度设计的通信硬件的金钱和能源成本过高,因此,浅水传感器网络的密集部署仍然是个遥不可及的目标。为了启用密集的浅水网络,我们提出了一种基于地面传感器节点成功的网络架构,它依赖于软件调制解调器与传感器节点中广泛使用的扬声器和麦克风的耦合来建立声学通信链路。在本文中,我们通过分析和经验研究了这种声学通信系统在水下环境中的潜力。我们的实验方法是先用弹性膜对组件进行防水处理,然后再将硬件配置在水中。中等性能分析结果揭示了硬件的有利运行频率,使我们能够设计软件FSK调制解调器。随后,我们的实验使用8频FSK软件调制解调器评估了水下通道的数据传输能力。在17×8 m受控水下环境中进行的实验产生了24 bps的无错误通道容量,并且他们还证明了该系统具有自适应保真度,支持6到48 bps之间的日期速率。

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