低功耗网络物理系统中两两广播同步的实验评估

U. Ghoshdastider, R. Viga, Michael Kraft
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引用次数: 8

摘要

网络物理系统(CPS)的不断发展使得增强脑机接口(BCI)与其他多模态生命传感器(如视频,加速,脉搏血氧仪(spo2测量))的可能性成为可能,这些传感器允许神经生理学家实时监测数据。然而,要将来自分布式传感器节点的各种数据关联起来,在定义网络中的全局时间方面面临着巨大的挑战,从而产生了网络时间同步的需求。在这种基于CPS的网络中使用时间同步之前,需要仔细考虑一些参数,包括精度、安全性、可靠性、处理时间、内存需求和能源成本。本文提出并从理论上证明了一种基于双向消息交换协议的节能时钟同步方法,即双广播同步(PBS)和另一种类似的传感器网络定时同步协议(TPSN)。为此,设计了一种新的自给自足的硬件对,以实现与现有基础设施的互操作性。为了简化医疗认证程序和降低功耗,考虑了蓝牙低功耗(BLE)介质。对这些方法的再现性、精密度和性能开销进行了实验评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental evaluation of a pairwise broadcast synchronization in a low-power Cyber-physical system
Increasing development of Cyber-physical systems (CPS) has made it possible to enhance the brain-computer interface (BCI) with other multimodal vital sensors e.g. video, acceleration, pulse oximetry (SpO2-Measurment) that allow the neurophysiologist to monitor data in real-time. However to correlate the diverse data from distributed sensor nodes possess a huge challenge in terms of defining a global time in the network and thereby generates a demand for time synchronization in the network. Before employing time synchronization in such a CPS based network it is required to carefully consider number of parameters including precision, security, reliability, processing time, memory requirement and energy costs. In this paper an energy-efficient clock synchronization method using two-way message exchange protocol which was recently proposed and theoretically proved namely pairwise-broadcast synchronization (PBS) and another similar method called timing-sync protocol for sensor networks (TPSN) were implemented. For this purpose a novel autarkic hardware pair was designed to enable the interoperability with existing infrastructure. Bluetooth low energy (BLE) medium was taken into consideration to ease the medical certification procedure and low power consumption. An experimental evaluation of the methods focusing on their reproducibility, precision, and performance overhead was discussed.
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