Investigation into the impact of protocol design on energy consumption of low power wireless sensors

D. Basu, G. S. Gupta, G. Moretti, X. Gui
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引用次数: 2

Abstract

This paper proposes a modified communication protocol that uses the knowledge of channel states to transmit packets. It shuts off the energy expensive acknowledgement operation during good channel state while uses all its retransmission attempts in bad channel state to deliver the packets through the channel. The impact of this protocol has been directly studied on the coin cell batteries that are used to power wireless sensors by emulating the loads for the battery and radio channel conditions. The radio channel is modeled as two state Markov chain with FAVORABLE and NON-FAVORABLE states. Three different channel conditions - good, bad and uncertain - are considered based on how often they transit between the FAVORABLE and NON-FAVORABLE states. The results have been compared with a classical communication protocol where communication between nodes takes place on send-acknowledge basis with a fixed number of retransmission attempts when error occurs. Our proposed protocol shows promising improvement in battery lifetime when dealing with good channel and found to be more effective in the other two channel conditions when the receive operation time is high. Analytical results are also used to substantiate our observations.
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协议设计对低功耗无线传感器能耗影响的研究
本文提出了一种改进的通信协议,利用信道状态的知识来传输数据包。它在信道良好状态时关闭能量昂贵的确认操作,而在信道不良状态时使用所有的重传尝试来通过信道传递数据包。通过模拟电池负载和无线电信道条件,直接研究了该协议对用于为无线传感器供电的纽扣电池的影响。将无线信道建模为有利状态和非有利状态的两态马尔可夫链。三种不同的信道条件——好的、坏的和不确定的——是基于它们在有利和非有利状态之间传递的频率来考虑的。结果与经典通信协议进行了比较,其中节点之间的通信是在发送-确认的基础上进行的,当发生错误时,重传尝试的次数是固定的。我们提出的协议在处理良好的信道时显示出有希望的电池寿命改善,并且发现在接收操作时间较高的其他两个信道条件下更有效。分析结果也被用来证实我们的观察。
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