分布式传感器网络中保证k覆盖的电池回归

Avinash More
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引用次数: 3

摘要

在能量受限的无线传感器网络中,在保证网络寿命最大化的同时保持应用所需的k覆盖度是一个重大挑战。现有的关于k -覆盖率的文献没有考虑ACTIVE节点的剩余能量水平和实际电池放电率。OBSP (Optimized Backoff Sleep Protocol)考虑剩余能级信息和电池放电率,但忽略k覆盖度。本文提出了基于电池放电曲线的k-覆盖保证协议(k- coverage Guarantee Protocol, k- cgp),对不同覆盖度(k)采用多项式回归,通过计算电池放电曲线得到的最优睡眠时间,利用接收信号强度指标进行距离估计,从而确定睡眠节点的最优唤醒率。采用等距离检验计算覆盖冗余。因此,可以在保持足够数量的ACTIVE节点的同时实现更少的网络能耗。仿真结果表明,与豌豆相比,k-CGP具有更高的节能和传感面积覆盖。
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Battery regression for guaranteed k-coverage in distributed sensor networks
In energy-constrain wireless sensor networks, maintaining k — coverage degree requested by an application while maximizing the network lifetime is a major challenge. Existing literature on k — coverage does not consider residual energy levels and actual battery discharge rate of ACTIVE nodes. OBSP (Optimized Backoff Sleep Protocol) considers the residual energy level information and battery discharge rate but ignores the k-coverage degree. This paper proposes k-CGP (k-Coverage Guarantee Protocol) based on battery discharge curve using polynomial regression for different coverage degrees (k). k-CGP determines the optimal wakeup rate of sleeping nodes by computing Optimal Sleep Time derived from battery discharge curve using polynomial regression and Received Signal Strength Indicator for distance estimation. The coverage redundancy is computed by using equi-distance test. Due to this, a sufficient number of ACTIVE nodes could be maintained while achieving lesser energy consumption in the network. Simulation results show that k-CGP achieves higher energy savings and sensing area coverage as compared to PEAS.
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