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Towards green computing in wireless sensor networks: Controlled mobility–aided balanced tree approach

机译:迈向无线传感器网络中的绿色计算:受控移动性辅助的平衡树方法

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摘要

Network lifetime maximization has received continuous attention as green computing in wireless sensor networks. Recently, controlled mobility-based green computing has witnessed significant attention from academia and industrial research labs. It is due to the growing number of sensor-based services in mobility friendly nonhostile environments in our daily life. The intelligent mobility-aided repositioning of sensors is significantly challenging considering the critical constraints including irregular power depletion, static normal sensors, the correlation between sensor position, and coverage and connectivity. In this context, this paper proposes a network lifetime maximization framework based on balanced tree node switching. Specifically, a balanced tree-based network model for wireless sensor networks is designed focusing on energy consumption of sensor nodes in tree-based networks. The problem of lifetime maximization in tree-based network is identified considering energy loss rate, path load, and balancing factor. Two node-shifting algorithms are developed, namely, energy-based shifting and load-based shifting for balancing tree-based network in terms of energy. Analytical and simulation experiment-based comparative performance evaluation attests the benefit of the proposed framework as compared to the state-of-the-art techniques considering a number of energy-oriented metrics for wireless networks.
机译:作为无线传感器网络中的绿色计算,网络寿命的最大化一直受到持续关注。最近,基于可移动性的绿色计算受到了学术界和工业研究实验室的极大关注。这是由于在我们的日常生活中,在对移动性友好的非敌对环境中,基于传感器的服务数量不断增加。考虑到包括不规则功率消耗,静态法线传感器,传感器位置,覆盖范围和连通性之间的相关性在内的关键约束,传感器的智能移动辅助重定位是一项巨大的挑战。在此背景下,本文提出了一种基于平衡树节点切换的网络寿命最大化框架。具体地,针对无线传感器网络的平衡的基于树的网络模型被设计为关注于基于树的网络中的传感器节点的能量消耗。考虑到能量损耗率,路径负载和平衡因子,确定了基于树的网络中最大寿命的问题。开发了两种节点移位算法,即基于能量的移位和基于负载的移位,以在能量方面平衡基于树的网络。与基于无线网络的许多面向能源的指标的最新技术相比,基于分析和仿真实验的比较性能评估证明了所提出框架的优势。

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