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Communication on limited-mobility underwater sensor networks.

机译:限流水下传感器网络上的通信。

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摘要

More than 70% of Earth's surface is covered by water. Earth's underwater world holds many exciting forms of life and undiscovered possibilities. It is sometimes referred to as "The Unexplored Frontier." We still do not fully understand the entirety of what happens in this mysterious world. The field of underwater sensor networks is a means of monitoring these environments. However, underwater sensor networks are still fraught with challenges; one of the main challenges being communication. In this thesis we look to improve communication in underwater sensor networks.;We expand a simulation environment that models node to node communication in an underwater sensor network that utilizes AquaNodes. We address issues with the first iteration of the environment, expand it to include packet-loss for acoustic communication, and make the addition of three dimensional topologies. We found that acoustic packet-loss had a larger impact on the energy consumption of the communication algorithms with more acoustic communication and three dimensional topologies do not affect the communication algorithms.;In addition to expanding the simulation environment we also explore using UAVs as a means of extracting data out of underwater sensor network. We conduct field experiments to characterize radio communication, develop an energy model to understand the energy limitations of an UAV, and develop overall policies for using an UAV with an underwater sensor network that utilizes AquaNodes. We learned that node to node radio communication range on the surface of the water had shorter ranges than on land. We also learned that node to UAV communication range was dependant on the altitude of the UAV. Overall, we found that using an UAV as a data mule was a viable method of extracting data out of certain underwater sensor network configurations.
机译:地球上超过70%的表面被水覆盖。地球的水下世界拥有许多令人兴奋的生命形式和未发现的可能性。它有时被称为“未开发的边界”。我们仍然不完全了解在这个神秘世界中发生的一切。水下传感器网络领域是监视这些环境的一种手段。但是,水下传感器网络仍然充满挑战。沟通的主要挑战之一。在本文中,我们寻求改善水下传感器网络中的通信。我们扩展了一个模拟环境,该环境在利用AquaNodes的水下传感器网络中为节点到节点的通信建模。我们解决了环境的第一次迭代问题,将其扩展到包括用于声学通信的丢包,并增加了三维拓扑。我们发现,随着更多的声通信,声包丢失对通信算法的能耗影响更大,而三维拓扑不会影响通信算法。;除了扩展仿真环境,我们还探索了使用无人飞行器作为一种手段从水下传感器网络提取数据的过程。我们进行野外实验以表征无线电通信,开发能量模型以了解无人机的能量局限性,并制定将无人机与带有AquaNodes的水下传感器网络一起使用的总体政策。我们了解到,水面上的节点到节点无线电通信范围比陆地上的范围短。我们还了解到,节点到无人机的通信范围取决于无人机的高度。总的来说,我们发现使用无人机作为数据m是从某些水下传感器网络配置中提取数据的可行方法。

著录项

  • 作者

    Yuen, Nicholas Y.;

  • 作者单位

    University of the Pacific.;

  • 授予单位 University of the Pacific.;
  • 学科 Engineering Computer.
  • 学位 M.S.Eng.
  • 年度 2013
  • 页码 83 p.
  • 总页数 83
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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