基于预测的自适应睡眠传感器网络环境监测

Zheng Yang, Bin Xu, Jingyao Dai, T. Gu
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引用次数: 3

摘要

能源效率已被证明是决定无线传感器网络监控系统工作周期的重要因素。已经进行了深入的研究,以提供节能的电源管理机制。在本文中,我们提出了PAS,一种基于预测的自适应睡眠机制,用于环境监测传感器网络以节约能源。PAS关注的是扩散刺激(DS)场景,这在环境监测应用中是非常常见和重要的。与以往的大部分工作不同,PAS探索了DS扩散过程的特点,以获得更高的能源效率。在PAS中,传感器根据观察到的DS扩散的紧急程度来确定自己的睡眠时间。当靠近DS边界的传感器保持清醒以准确捕捉可能的刺激到来时,远处的传感器则进入睡眠模式以保存能量。仿真实验表明,该方法在不降低系统性能的前提下,大大降低了系统能耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PAS: Prediction-based Adaptive Sleeping for Environment Monitoring in Sensor Networks
Energy efficiency has proven to be an important factor dominating the working period of WSN surveillance systems. Intensive studies have been done to provide energy efficient power management mechanisms. In this paper, we present PAS, a Prediction-based Adaptive Sleeping mechanism for environment monitoring sensor networks to conserve energy. PAS focuses on the diffusion stimulus (DS) scenario, which is very common and important in the application of environment monitoring. Different with most of previous works, PAS explores the features of DS spreading process to obtain higher energy efficiency. In PAS, sensors determine their sleeping schedules based on the observed emergency of DS spreading. While sensors near the DS boundary stay awake to accurately capture the possible stimulus arrival, the far away sensors turn into sleeping mode to conserve energy. Simulation experiment shows that PAS largely reduces the energy cost without decreasing system performance.
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