Noise-Aware Energy-Efficient Sensor Binding

N. Tas, C. Sastry, Vania Mesrob
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引用次数: 5

Abstract

Most wireless sensor network (WSN) architectures involve clusters of sensor nodes reporting their sensed data to base stations or sink nodes, and end applications access sensor data from the sink nodes through service-oriented paradigms. One of the key challenges involved in the design of WSN applications through such architectures is the need to conserve the energy of batteries used to power sensor nodes. This is because sensor-to-sink communication takes up the bulk of the available battery power on a sensor node. In this paper, we present a novel strategy for associating a sensor node to one of many possible sink nodes. The problem is approached from an "energy efficiency" point of view in a noisy environment. We formulate cost metrics that can be utilized to evaluate what impact both signal to noise ratio (SNR) and interference level have on packet loss when a particular sensor node is associated with a particular sink node. Using these cost metrics, a sink node advices a sensor node wishing to associate with it on what costs would be incurred, and the sensor nodes chooses to bind with the sink node that has the least cost. We then undertake a simulation study to demonstrate the efficacy of our cost metrics towards energy efficiency and show that an implicit added benefit is the distribution of the total load on all the available sink nodes resulting in "load balancing".
噪声感知节能传感器绑定
大多数无线传感器网络(WSN)架构涉及传感器节点集群向基站或汇聚节点报告其感知数据,终端应用程序通过面向服务的范式从汇聚节点访问传感器数据。通过这种架构设计WSN应用所涉及的关键挑战之一是需要节省用于为传感器节点供电的电池的能量。这是因为传感器到接收器的通信占用了传感器节点上可用电池的大部分电量。在本文中,我们提出了一种将传感器节点关联到许多可能的汇聚节点之一的新策略。这个问题是从噪声环境下的“能源效率”角度出发的。我们制定了成本指标,可用于评估当特定传感器节点与特定汇聚节点相关联时,信噪比(SNR)和干扰水平对数据包丢失的影响。使用这些成本指标,一个汇聚节点告知希望与其关联的传感器节点将产生哪些成本,传感器节点选择与成本最低的汇聚节点绑定。然后,我们进行了一项模拟研究,以证明我们的成本指标对能源效率的有效性,并表明隐含的附加效益是在所有可用的汇聚节点上分配总负载,从而实现“负载平衡”。
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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