使用唤醒无线电的植入式身体传感器网络MAC协议-在动物组织中的评估

V. Ramachandran, B. V. D. Zwaag, N. Meratnia, P. Havinga
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引用次数: 6

摘要

在过去十年中,植入式传感器网络在医疗保健行业的应用急剧增加。有不同类型的介质访问控制(MAC)协议是为植入式身体传感器网络设计的,使用不同的物理层技术,如窄带、超宽带、人体通信和具有创新低功耗接入技术的超声波,称为唤醒无线电(WuR)。WuR与主无线电在同一频率或不同频率下工作,与主无线电相比,功耗低得多,硬件组件也少得多。在本文中,我们分析了WuR对常用MAC协议的影响,并使用植入动物组织的真实硬件评估了三种带WuR的MAC协议,并将其与其他三种不带WuR的MAC协议进行了比较。所述硬件可植入板内嵌微处理器、无线通信单元,并皮下植入动物组织的皮肤下。采用星形拓扑连接的5个节点,其中1个节点为中央控制器进行评价。每个节点的能效、丢包率方面的可靠性和端到端时延作为评估标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implantable body sensor network MAC protocols using wake-up radio — Evaluation in animal tissue
Applications of implantable sensor networks in the health-care industry have increased tremendously over the last decade. There are different types of medium access control (MAC) protocols that are designed for implantable body sensor networks, using different physical layer technologies such as narrow band, ultra wide-band, human body communication, and ultrasound with an innovative low power access technology called wake-up radio (WuR). The WuR operates alongside the main radio either in the same frequency or different frequency, with much lower power and reduced hardware components than main radio. In this article we analyze the impact of WuR on commonly used MAC protocols and evaluate three MAC protocols with WuR using real hardware implanted in animal tissue and compare them with three other MAC protocols without WuR. The hardware implantable board is embedded with a micro-processor, wireless communication unit and is subcutaneously implanted under the skin of the animal tissue. Five nodes with one of them being the central controller connected in star topology are used for evaluation. Energy efficiency, reliability in terms of packet loss ratio, and end-to-end delay for each node are considered as the evaluation criteria.
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