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Efficient Data Gathering with Mobile Collectors and Space-Division Multiple Access Technique in Wireless Sensor Networks

机译:无线传感器网络中利用移动收集器和空分多址技术进行高效的数据收集

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Recent years have witnessed a surge of interest in efficient data gathering schemes in wireless sensor networks (WSNs). In this paper, we address this issue by adopting mobility and space-division multiple access (SDMA) technique. Specifically, mobile collectors, called SenCars in this paper, work like mobile base stations and collect data from associated sensors via single-hop transmissions so as to achieve uniform energy consumption. We also apply SDMA technique to data gathering by equipping each SenCar with multiple antennas such that distinct compatible sensors may successfully make concurrent data uploading to a SenCar. To investigate the utility of the joint design of controlled mobility and SDMA technique, we consider two cases, where a single SenCar and multiple SenCars are deployed in a WSN, respectively. For the single SenCar case, we aim to minimize the total data gathering time, which consists of the moving time of the SenCar and the data uploading time of sensors, by exploring the trade-off between the shortest moving tour and the full utilization of SDMA. We refer to this problem as mobile data gathering with SDMA, or MDG-SDMA for short. We formalize it into an integer linear program (ILP) and propose three heuristic algorithms for it. In the multi-SenCar case, the sensing field is divided into several regions, each having a SenCar. We focus on minimizing the maximum data gathering time among different regions and refer to it as mobile data gathering with multiple SenCars and SDMA (MDG-MS) problem. Accordingly, we propose a region-division and tour-planning (RDTP) algorithm in which data gathering time is balanced among different regions. We carry out extensive simulations and the results demonstrate that our proposed algorithms significantly outperform single SenCar and non-SDMA schemes.
机译:近年来,目睹了对无线传感器网络(WSN)中有效数据收集方案的兴趣激增。在本文中,我们通过采用移动性和空分多址(SDMA)技术来解决此问题。具体而言,在本文中称为SenCars的移动收集器的工作方式类似于移动基站,并通过单跳传输从关联的传感器收集数据,从而实现了统一的能耗。我们还通过为每个SenCar配备多个天线来将SDMA技术应用于数据收集,这样,不同的兼容传感器可以成功地将并行数据上传到SenCar。为了研究可控移动性和SDMA技术的联合设计的实用性,我们考虑了两种情况,即在一个WSN中分别部署一个SenCar和多个SenCar。对于单个SenCar案例,我们旨在通过探索最短的行驶行程与SDMA的充分利用之间的权衡来最大程度地减少总数据收集时间,其中包括SenCar的移动时间和传感器的数据上传时间。 。我们将此问题称为通过SDMA或简称MDG-SDMA进行移动数据收集。我们将其形式化为整数线性程序(ILP),并提出三种启发式算法。在多SenCar的情况下,感应场分为几个区域,每个区域都有一个SenCar。我们致力于最大程度地减少不同区域之间的最大数据收集时间,并将其称为带有多个SenCars和SDMA(MDG-MS)问题的移动数据收集。因此,我们提出了一种区域划分和游览计划(RDTP)算法,其中数据收集时间在不同区域之间保持平衡。我们进行了广泛的仿真,结果表明我们提出的算法明显优于单个SenCar和非SDMA方案。

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