Motion Prediction of Underwater Sensors

Abdulrzaq Naji Jamjoom
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Abstract

In this work, we will simulate the motion of a single underwater sensor knowing the current velocity to predict its location and velocity during certain time frame using a numerical approach of non-linear time-dependent partial differential equations and develop numerical computer programming code to solve the equations. The underwater sensor are used to collect data for many scientific and practical reasons all the sensor collected data without specifying the sensor location and time will be missing lowers valuable information and by simulating the sensor motion numerically will have many values and impact on the underwater sensor industries as this will lead to less power consumption sensors with smaller size and less network coverage required. This paper will study the kinetics of the underwater sensor which will resulted to a set of non-linear time-dependent partial differential equations that can be solved analytically and computer programming simulation is developed to solve the equations and predict the motion of underwater sensor. Different scenarios considered in the work such as simulating the result for different sensor’s density and the effect on its final position.   Also, the result will include the sensor velocity simulation and comparison with the sea current velocity. This work is limited to the motion prediction of single underwater sensor and the result is only for mechanical aspect of the problem, the networks connectivity or coverage is out-of-scope.
水下传感器的运动预测
在这项工作中,我们将利用非线性时变偏微分方程的数值方法模拟单个水下传感器在当前速度下的运动,以预测其在特定时间框架内的位置和速度,并开发数值计算机编程代码来求解这些方程。水下传感器用于收集数据有许多科学和实际的原因,所有的传感器收集的数据没有指定传感器的位置和时间将丢失降低有价值的信息,通过模拟传感器的运动数值将有许多价值和影响水下传感器行业,因为这将导致更小的尺寸和更少的网络覆盖所需的传感器功耗更低。本文将研究水下传感器的动力学,从而得到一组可解析求解的非线性时变偏微分方程,并开发计算机程序模拟来求解这些方程并预测水下传感器的运动。工作中考虑了不同的场景,如模拟不同传感器密度的结果和对其最终位置的影响。结果还包括传感器速度的模拟以及与海流速度的比较。本工作仅限于单个水下传感器的运动预测,结果仅针对问题的机械方面,网络的连通性或覆盖范围超出了范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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