Liu Zhihua, Gao Han, Wang Wuling, Chang Shuai, Chen Jiaxing
College of Information Technology, Hebei Normal University, Shijiazhuang 050024, China.
College of Mathematics and Information Science, Hebei Normal University, Shijiazhuang 050024, China.
Sensors (Basel). 2015 Mar 12;15(3):6009-32. doi: 10.3390/s150306009.
Accurate localization of mobile nodes has been an important and fundamental problem in underwater acoustic sensor networks (UASNs). The detection information returned from a mobile node is meaningful only if its location is known. In this paper, we propose two localization algorithms based on color filtering technology called PCFL and ACFL. PCFL and ACFL aim at collaboratively accomplishing accurate localization of underwater mobile nodes with minimum energy expenditure. They both adopt the overlapping signal region of task anchors which can communicate with the mobile node directly as the current sampling area. PCFL employs the projected distances between each of the task projections and the mobile node, while ACFL adopts the direct distance between each of the task anchors and the mobile node. The proportion factor of distance is also proposed to weight the RGB values. By comparing the nearness degrees of the RGB sequences between the samples and the mobile node, samples can be filtered out. The normalized nearness degrees are considered as the weighted standards to calculate the coordinates of the mobile nodes. The simulation results show that the proposed methods have excellent localization performance and can localize the mobile node in a timely way. The average localization error of PCFL is decreased by about 30.4% compared to the AFLA method.
在水下声学传感器网络(UASN)中,移动节点的精确定位一直是一个重要且基础的问题。只有当移动节点的位置已知时,从该移动节点返回的检测信息才具有意义。在本文中,我们提出了两种基于颜色滤波技术的定位算法,分别称为PCFL和ACFL。PCFL和ACFL旨在以最小的能量消耗协同完成水下移动节点的精确定位。它们都采用能够直接与移动节点通信的任务锚点的重叠信号区域作为当前采样区域。PCFL采用每个任务投影与移动节点之间的投影距离,而ACFL采用每个任务锚点与移动节点之间的直接距离。还提出了距离比例因子来对RGB值进行加权。通过比较样本与移动节点之间RGB序列的接近程度,可以滤除样本。将归一化的接近程度作为加权标准来计算移动节点的坐标。仿真结果表明,所提出的方法具有出色的定位性能,能够及时对移动节点进行定位。与AFLA方法相比,PCFL的平均定位误差降低了约30.4%。