水下传感器网络能量空洞最小化方法研究

Satyabrata Das, Niva Tripathy
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引用次数: 3

摘要

水下传感器网络(UWSNs)与地面传感器网络的主要区别在于使用声信号而不是无线电信号作为通信介质。这背后的主要原因是无线电信号在水中表现不佳。UWSNs具有传播延迟大、误差率高、带宽低、能量有限等特点,这使其具有更大的研究价值。uwsn在海洋学、数据采集、污染监测、近海勘探、灾害预防、辅助导航、战术监视等领域有广泛的应用。在uwsn中,协议设计的主要优点是从源到目的的可靠有效的数据传输。其中,能源效率在水下通信中起着重要的作用。UWSNs的主要能量来源是电池,很难经常更换。有两种流行的水下协议是DBR和EEDBR。DBR是一种不使用全维位置信息的路由技术。在本文中,作者使用了一种有效的区域定位方案,以最小化产生的能量洞。该技术不是寻找精确的传感器位置,而是估计特定区域内每个传感器节点的位置。此外,作者还介绍了一种基于射频的定位和多级功率传输方案。仿真结果表明,该方案比其他方案的效果更好。
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Minimization of Energy Hole in Under Water Sensor Networks (UWSNs)
The major difference between underwater sensor networks (UWSNs) and terrestrial sensor networks is the use of acoustic signals as a communication medium rather than radio signals. The main reason behind this is the poor performance of radio signals in water. UWSNs have some distinct characteristics which makes them more research-oriented which is the large propagation delay, high error rate, low bandwidth, and limited energy. UWSNs have their application in the field of oceanographic, data collection, pollution monitoring, off-shore exploration, disaster prevention, assisted navigation, tactical surveillance, etc. In UWSNs the main advantages of protocol design are to a reliable and effective data transmission from source to destination. Among those, energy efficiency plays an important role in underwater communication. The main energy sources of UWSNs are batteries which are very difficult to replace frequently. There are two popular underwater protocols that are DBR and EEDBR. DBR is one of the popular routing techniques which don't use the full dimensional location information. In this article the authors use an efficient area localization scheme for UWSNs to minimize the energy hole created. Rather than finding the exact sensor position, this technique will estimate the position of every sensor node within certain area. In addition to that the authors introduced a RF based location finding and multilevel power transmission scheme. Simulation results shows that the proposed scheme produces better result than its counter parts.
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