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Analysis of Micro Duty Cycle Techniques for Efficient SMAC

机译:高效SMAC微量循环技术分析

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摘要

Wireless Sensor Network commonly known as WSN is drawing attention for the researchers as it has a vast area of applications. Also, WSN’s continuously improving. Among all of those lacking, the power drainage of a WSN is a prior issue that lies within the Medium Access Control (MAC) layer. In this paper, a theoretical improvement in the MAC layer of WSN has been proposed, as MAC is accountable for the energy-affecting functioning. This paper precisely focuses on improving Sensor Medium Access Control (SMAC) by breaking its fixed duty cycles into micro duty cycles with a variable time mechanism. The investigation has been done thoroughly considering the standard SMAC in order to extort proposed strategies for energy efficient SMAC analysing fundamental performance parameters such as energy savings, duty cycle and average sleep delay considering the sleep time analysis. It has been found that the least sleep time as micro duty cycle performs better to save energy instead listen time.
机译:无线传感器网络通常被称为WSN,为研究人员提出了关注,因为它具有大广域的应用。此外,WSN不断改进。在所有缺乏的人中,WSN的功率排水是在媒体访问控制(MAC)层内的先前问题。在本文中,提出了WSN的MAC层的理论改进,因为MAC对于能量 - 影响功能负责。本文精确地专注于通过将固定的占空比与可变时期机构分解为微占循环来改善传感器介质访问控制(SMAC)。考虑到标准SMAC,旨在揭示拟议的节能SMAC策略,分析了睡眠时间分析的能力节能,占空比和平均睡眠延迟等基本绩效参数的策略。已经发现,作为微占空比的最小睡眠时间更好地节省能量而不是倾听时间。

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