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A low-cost distributed networked localization and time synchronization framework for underwater acoustic testbeds

机译:水下声学试验台的低成本分布式网络定位和时间同步框架

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Localization and time synchronization are both essential services for Internet-connected underwater acoustic testbeds. Although the two are mutually coupled, they are often treated separately. We propose a new low-cost distributed networked localization and time synchronization framework for underwater acoustic sensor networks. The proposal is based on decoupling the two problems and solving first the time synchronization then localization using the same set of messages, i.e., with no additional overhead. A coarse, followed by a fine-grained, localization algorithm is adopted to accurately estimate the location of an unknown node. The solution is robust to noisy range measurements. The proposed scheme is implemented in a testbed based on Teledyne Benthos Telesonar SM-975 underwater modems and tested extensively in Lake LaSalle at the University at Buffalo. Experiments and simulations in terms of root mean square error (RMSE) demonstrate that the proposed scheme can achieve a high accuracy for a limited energy budget.
机译:本地化和时间同步是互联网连接的水下声学测试平台的基本服务。虽然这两个是相互耦合的,但它们通常分别治疗。我们提出了一种新的低成本分布式网络定位和水下声学传感器网络的时间同步框架。该提案基于解耦两个问题,并首先使用相同的消息集,即本地化,即,没有额外的开销。采用粗糙,然后是细粒度,定位算法,以准确估计未知节点的位置。解决方案是嘈杂的范围测量的强大。该拟议方案是在基于Teledyne Benthos Telesonar SM-975水下调制解调器的试验台上实施,并在布法罗大学的La Salle中广泛测试。在均方根误差(RMSE)方面的实验和模拟表明,所提出的方案可以实现有限的能源预算的高精度。

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