Energy efficient data collection with mobile robots in heterogeneous sensor networks

Jared Goerner, N. Chakraborty, K. Sycara
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引用次数: 10

Abstract

In this paper, we study the problem of constructing a path for a mobile data collecting robot such that the total data collection cost (i.e., sum of transmission energy of the sensor nodes and movement energy of the robot) in a sensor network is minimized. We assume that the sensor nodes can transmit within a certain region around their position, which is called the communication set. We model the communication set as a convex set to take into account asymmetric transmission systems (like directional antennas). We derive a necessary condition for the optimality of a mobile robot tour through the communication sets. Based on this condition, we design a three-step approach to compute a local minimum of the optimization problem. We prove that our solution is guaranteed to be within a constant factor of the global optimal solution. Our algorithm works for both 2-dimensional and 3-dimensional sensor networks where the sensor nodes are heterogeneous and can have directional communication properties. In contrast, existing algorithms for computing data collecting routes are for planar sensor networks and assume the communication sets to be discs. We also present simulation results depicting the performance of our algorithm.
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异构传感器网络中移动机器人的节能数据采集
本文研究了在传感器网络中,如何构造移动数据采集机器人的路径,使数据采集总成本(即传感器节点的传输能量与机器人的运动能量之和)最小。我们假设传感器节点可以在其位置周围的一定区域内进行传输,这个区域称为通信集。我们将通信集建模为凸集,以考虑非对称传输系统(如定向天线)。导出了移动机器人通过通信集漫游的最优性的必要条件。在此条件下,我们设计了一种计算优化问题的局部最小值的三步方法。我们证明了我们的解保证在全局最优解的常数因子范围内。我们的算法适用于二维和三维传感器网络,其中传感器节点是异构的,可以具有定向通信特性。相比之下,现有的计算数据采集路由的算法是针对平面传感器网络的,并且假设通信集是圆盘。我们还给出了描述算法性能的仿真结果。
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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