传感器网络节能自适应传感范围

A. K. Nayak, B. Misra, S. Rai
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引用次数: 7

摘要

无线传感器网络(WSN)中的能量问题仍然是阻碍该技术全面开发的主要障碍之一。传感器节点通常由电池供电,仍然是一种有限的资源,需要明智地使用。因此,高效的能源管理是优化利用传感器网络技术的关键要求。在这项工作中,我们提出了一种优化传感器寿命的新方法,通过将传感器组织成最大数量的具有非均匀传感范围的非不相交集覆盖。当其他传感器处于睡眠模式以消耗可忽略不计的能量时,一套套中的传感器在任何时刻都保持活动状态。每个集盖依次激活,从而增加了网络的总寿命。通过大量的仿真工作证明,与固定传感量程的传感器相比,通过调整传感量程可以延长网络寿命。该方法采用遗传算法和贪心启发式方法确定传感器网络的最优感知范围,实现传感器网络的高效能量管理。仿真结果证明了该方法优于固定距离策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy efficient adaptive sensing range for sensor network
The energy problem in wireless sensor networks (WSN) remains one of the major barriers preventing the complete exploitation of this technology. Sensor nodes are typically powered by batteries remains a limited resource to be consumed judiciously. Efficient energy management is thus a key requirement for optimal utilization of the sensor network technology. In this work we propose a novel method to optimize the sensor life by organizing the sensors into a maximal number of non-disjoint set covers with non-uniform sensing ranges. Sensors available in one set cover remain active at any instant of time while other sensors are in sleep mode to consume negligible energy. Each set cover is activated successively, thereby increasing the total lifetime of the network. It has been proved through extensive simulation work that the network lifetime can be increased by adjusting their sensing ranges as compared to sensors with fixed sensing ranges. This method employs genetic algorithm (GA) and greedy heuristic approach to determine optimal sensing range for efficient energy management in sensor network. Simulation results prove its efficiency over the fixed-range strategies.
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