三维无线传感器网络的能量优化拓扑控制

IF 2.9 3区 计算机科学 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
Mason Thammawichai;Thiansiri Luangwilai
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引用次数: 0

摘要

能量优化路由协议被认为是无线传感器网络(WSN)中的一个重要问题,因为它会影响网络的寿命。现有的路由算法大多是针对二维网络设计的,无法应用于三维 WSN。由于缺乏对三维空间的了解,二维路由算法在山丘、城市区域、地下区域、水下区域等真实的三维环境中表现不佳。这些网络还存在路由伸展、能效和负载平衡等问题。因此,本文将混合整数线性规划作为最优 WSN 拓扑控制问题,以解决三维地形中的能量优化路由问题。所提出的方法是一种自组织网络,使用聚类和休眠/唤醒方案来最大化网络寿命和最小化能量消耗。仿真结果表明,我们的算法对各种地形都具有鲁棒性,与一种著名的协议(即多跳低能耗自适应聚类层次结构(LEACH))相比,能显著提高网络寿命,平均提高了 44.94%。结果还表明,能量平衡策略比总能量最小化方案提供了更好的解决方案,这是因为在每一轮决策中,簇头选择采用了最优负载平衡方案。此外,我们的全局最优解可以作为所有启发式算法的基准。虽然优化问题中的变量数量随着传感器节点数量的增加而非线性增长,但由于问题是线性的,因此计算时间相当实用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An energy-optimization topology control for three-dimensional wireless sensor networks
Energy optimization routing protocol is considered an essential problem in wireless sensor networks (WSNs) as it can affect the network lifetime. Most of the existing routing algorithms are designed for two-dimensional networks, which cannot be transferred to three-dimensional WSNs. Due to a lack of knowledge about the third dimension, 2D routing algorithms perform badly in a real-life 3D environment such as a hill, an urban area, an underground area, an underwater area, and so forth. These networks also suffer from problems such as routing stretch, energy efficiency, and load balancing. Therefore, in this paper, a mixed integer linear programming is formulated as an optimal WSN topology control problem to address the energy optimization routing problem in 3D terrain. The proposed method is a self-organized network that uses clustering and sleep/wake-up schemes to maximize the network lifetime and minimize energy consumption. Simulations revealed that our algorithm is robust to various terrains and significantly increases the network lifetime when compared to a well-known protocol, i.e., the multi-hop low energy adaptive clustering hierarchy (LEACH), with an improved average of 44.94 %. The results also suggested that the energy balancing strategy provided better solutions than the minimizing total energy scheme due to the optimal load balancing scheme of the cluster head selection at each decision round. Furthermore, our global optimal solutions can serve as a benchmark for all heuristic algorithms. Though the number of variables in our optimization problem grows nonlinearly with the number of sensor nodes, the computation time is rather practical as the problem is linear.
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来源期刊
CiteScore
6.60
自引率
5.60%
发文量
66
审稿时长
14.4 months
期刊介绍: The JOURNAL OF COMMUNICATIONS AND NETWORKS is published six times per year, and is committed to publishing high-quality papers that advance the state-of-the-art and practical applications of communications and information networks. Theoretical research contributions presenting new techniques, concepts, or analyses, applied contributions reporting on experiences and experiments, and tutorial expositions of permanent reference value are welcome. The subjects covered by this journal include all topics in communication theory and techniques, communication systems, and information networks. COMMUNICATION THEORY AND SYSTEMS WIRELESS COMMUNICATIONS NETWORKS AND SERVICES.
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