提高物联网设备寿命的高效电源延迟管理框架

A. Bin-Salem, Salah Bindahman, Sabri M. Hanshi, W. Munassar, Khaled Aladhal
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引用次数: 2

摘要

物联网(IoT)将大量物体连接在一起,然后监控和收集机器和人类生活的数据。由于能源效率和延迟时间的降低对物联网设备和控制数据至关重要,因此功耗和延迟问题是物联网环境中最新和最主要的挑战,研究工作和物联网相关标准一直集中在此[1]。例如,物联网环境通过连接大量智能手机和嵌入式设备提供全球连接,通过敏感,自适应和响应人类需求来简化生活。这些设备在很长一段时间内传输轻量级数据,并且位于难以到达的地方,在那里很难部署电源来处理这些设备的长覆盖区域。这种情况需要一种电源和一种技术来处理所有这些设备在大覆盖区域,这是不保证和难以部署的。因此,应该采用一种类似于长期演进机器类型通信类别M1 (LTE MTC Cat-M1)和窄带物联网(NB-IoT)的低功率广域网(LPWAN)的新范式来集成和扩展已取得的收益,以解决这些影响数百亿设备大覆盖范围的功耗问题[2]。LPWAN通过使用DRX/eDRX机制来解决这些问题;然而,现有的DRX模型与4G部分不一致。本研究的目的是提出一个框架,在提高节能效率的同时保持保证延迟要求的能力,以实现物联网设备更好的使用寿命。因此,它将节省在更换和维护成本上可能耗尽的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient Power-Delay Management Framework for Enhancing the Lifetime of IoT Devices
The Internet of Things (IoT) connects huge numbers of objects together, then monitors and gathers data on machines and human life. Since energy efficiency and delay time reduction are of the highest importance to the IoT devices and control data, power consumption and delay issues are the most recent and primary challenges in IoT environment, where the research works and IoT-related standards have been focused on [1]. For example, the IoT environment provides a global connectivity by connecting a huge number of smart phones and embedded devices for the simplification of life through being sensitive, adaptive, and responsive to human needs. Such devices transfer lightweight data over long periods and are located in hard-to-reach places, where is difficult to deploy a source of power to handle these devices over a long coverage area. This situation requires a source of power and a technique to handle all these devices over large coverage areas, which are not guaranteed and difficult to deploy it. Thus, a new paradigm called Low Power Wide Area networks (LPWAN), similar to Long Term Evolution Machine Type Communications Category M1 (LTE MTC Cat-M1 and Narrow Band IoT (NB-IoT), should be adopted in integrating and extending the achieved gains for solving these issues that shape the power consumption with a large coverage area of tens of billions of devices [2]. LPWAN is defined for solving these issues by using a DRX/eDRX mechanism; however, the existing DRX models are partially inconsistent with 4G. The purpose of this research is to propose a framework that improve the power saving efficiency while maintaining the ability to guarantee the delay requirement for achieving a better lifetime of IoT devices. Hence, it will save expended resources that could have been exhausted on the cost replacement and maintenance.
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