Design and implementation of energy efficient reconfigurable networks (WORN-DEAR) for BAN in IOT environment (BIOT)

P. Kumaresan, P. Manoharan
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引用次数: 4

Abstract

Embedded systems are pervasive with the advent of internet of things. This has led smart devices to be omnipotent. Even though the technology becomes omnipotent, several research problems arise in design and implementation. Here, we have concentrated on the low power healthcare system based on body area networks (BAN) in which the technology embeds the body area networks with internet of things (IOT) which can be jointly coined as BAN internet of things (BIOT). BIOT finds application as wearable devices for monitoring and care giving systems for patients. Due to BIOTs nature of omnipotent application in the healthcare, maintaining its life time remains in the darker side of the research. To overcome this problem, a new algorithm for the BIOT called wake-on reconfigurable networks (WORN) has been proposed. The proposed algorithm works on the distance energy adaptive rule (DEAR) rule sets. By increasing the life time of the devices, BIOT with WORN-DEAR power model will be the bridge between the human and the machine interface.
物联网环境下BAN节能可重构网络(WORN-DEAR)的设计与实现
随着物联网的出现,嵌入式系统得到了广泛的应用。这使得智能设备变得无所不能。尽管该技术变得无所不能,但在设计和实现中出现了一些研究问题。在这里,我们专注于基于身体区域网络(BAN)的低功耗医疗保健系统,该技术将身体区域网络与物联网(IOT)嵌入,可以共同创造为BAN物联网(BIOT)。BIOT可以作为可穿戴设备应用于患者的监测和护理系统。由于生物技术在医疗保健领域的全能应用,维持生物技术的生命周期一直是研究的阴暗面。为了克服这个问题,提出了一种新的BIOT算法,称为唤醒可重构网络(WORN)。该算法适用于距离能量自适应规则(DEAR)规则集。通过延长设备的使用寿命,采用WORN-DEAR电源模式的BIOT将成为人机界面之间的桥梁。
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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