MobiL: A 3-dimensional localization scheme for Mobile Underwater Sensor Networks

Tamoghna Ojha, S. Misra
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引用次数: 35

Abstract

In this paper, we introduce a 3-dimensional, distributed, iterative, and ‘silent’ localization protocol for Mobile Underwater Sensor Networks (MUSNs) named as Mobility Assisted Localization Scheme (MobiL). The existing solutions addressing the localization problem in underwater sensor networks (UWSNs) either consider the sensor nodes to be stationary or require powerful nodes, which can directly communicate with the surface sinks. Such assumptions are not applicable in MUSNs, where sensor nodes are affected by passive node mobility and the acoustic communication channel is severely impaired by high propagation loss. On the other hand, MobiL requires only three anchor nodes capable of providing the initial location beacon and all other nodes are ordinary sensor nodes. We exploit the spatially correlated mobility pattern of UWSNs and apply it to localize the sensor nodes. Also, we employ the ‘silent’ listening of beacon messages, which empowers MobiL to be energy-efficient. Simulations in NS-3 show that the proposed scheme successfully localizes nearly 90% of the total sensor nodes with localization error in the order of 25–30% of the error threshold in highly mobile UWSNs.
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移动水下传感器网络的三维定位方案
在本文中,我们介绍了一种用于移动水下传感器网络(MUSNs)的三维、分布式、迭代和“静默”定位协议,称为移动辅助定位方案(MobiL)。现有的解决水下传感器网络定位问题的方法,要么认为传感器节点是静止的,要么需要强大的节点,可以直接与水面接收器通信。这种假设不适用于musn,其中传感器节点受到被动节点移动的影响,并且声学通信通道受到高传播损耗的严重损害。另一方面,MobiL只需要三个能够提供初始位置信标的锚节点,所有其他节点都是普通的传感器节点。我们利用uwsn的空间相关移动模式,并将其应用于传感器节点的定位。此外,我们还采用了“静音”监听信标信息的功能,这使得美孚能够高效节能。在NS-3中的仿真结果表明,该方案成功定位了近90%的传感器节点,定位误差在高移动uwsn误差阈值的25-30%之间。
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