An energy efficient wakeup schedule and power management algorithm for wireless sensor networks

L. Sherly Puspha Annabel, K. Murugan
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引用次数: 13

Abstract

The sensor network's lifetime depends mainly on the sensor node's battery power. In many of the various power saving protocols the sensor nodes will be put into sleep state when there is no transmission. These protocols do not change the awake and sleep time of the node according to its traffic load. This periodic and regular sleep and awake method of these protocols cause high latency and high energy consumption. If a host is not involved in power management it will be allowed to sleep. Therefore, to efficiently manage a sensor node's energy, there should be a power saving mechanism which also guarantees successful transmission. The sensor nodes have to wake up based on the packets that are pending in the buffer. A homogenous wakeup schedule and power management scheme is proposed to reduce the energy consumed in idle state for wireless sensor networks. This scheme consists of two algorithms namely power management and wakeup schedule algorithm. In wake up schedule algorithm each sensor node selects its own wake up time intervals based on its pending packets. In power management algorithm, an efficient power management scheme is introduced that facilitates effective communication while saving considerable amount of energy.
一种无线传感器网络的节能唤醒调度和电源管理算法
传感器网络的寿命主要取决于传感器节点的电池电量。在许多节能协议中,传感器节点在没有传输的情况下会进入休眠状态。这些协议不会根据业务负载改变节点的唤醒和休眠时间。这些协议的这种周期性和有规律的睡眠和唤醒方式导致高延迟和高能耗。如果主机没有参与电源管理,它将被允许休眠。因此,为了有效地管理传感器节点的能量,应该有一个节能机制,同时保证传输成功。传感器节点必须根据缓冲区中挂起的数据包唤醒。为了降低无线传感器网络空闲状态下的能量消耗,提出了一种同质唤醒调度和电源管理方案。该方案由电源管理算法和唤醒调度算法两部分组成。在唤醒调度算法中,每个传感器节点根据其待处理的数据包选择自己的唤醒时间间隔。在电源管理算法中,提出了一种高效的电源管理方案,在实现有效通信的同时节省大量的能源。
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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