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具有相关隔离组的人体传感器网络的可靠性分析

Reliability analysis of body sensor networks with correlated isolation groups.

作者信息

Zhao Guilin, Xing Liudong

机构信息

School of Computing & Artificial Intelligence, Southwest Jiaotong University, China.

Electrical & Computer Engineering Department, University of Massachusetts, Dartmouth, USA.

出版信息

Reliab Eng Syst Saf. 2023 Aug;236:109305. doi: 10.1016/j.ress.2023.109305. Epub 2023 Apr 11.

Abstract

Body sensor networks (BSNs) are playing a crucial role in tackling arising challenges during the COVID-19 pandemic. This work contributes by modeling and analyzing the BSN reliability considering the effects of correlated functional dependence (FDEP) and random isolation time behavior. Particularly, the FDEP exists in BSNs where a relay is utilized to assist the communication between some biosensors and the sink device. When the relay malfunctions, the dependent biosensors may communicate directly with the sink for a limited, uncertain time. These biosensors then become isolated from the rest of the BSN when their remaining power depletes to the level insufficient to support the direct communication. Moreover, multiple biosensors sharing the same relay and a biosensor communicating with the sink via several alternative relays create correlations among different FDEP groups. In addition, the competition in the time domain exists between the local failure of the relay and the propagated failures of dependent biosensors. Both the correlation and competition complicate the reliability modeling and analysis of BSNs. This work proposes a combinatorial and analytical methodology to address both effects in the BSN reliability analysis. The proposed method is demonstrated using a detailed case study and verified using a continuous-time Markov chain method.

摘要

人体传感器网络(BSNs)在应对新冠疫情期间出现的挑战方面发挥着关键作用。这项工作通过对考虑相关功能依赖(FDEP)和随机隔离时间行为影响的BSN可靠性进行建模和分析做出了贡献。具体而言,FDEP存在于使用中继来协助一些生物传感器与汇聚设备之间通信的BSN中。当中继发生故障时,相关的生物传感器可能会在有限的、不确定的时间内直接与汇聚设备通信。当这些生物传感器的剩余电量耗尽到不足以支持直接通信的水平时,它们就会与BSN的其余部分隔离。此外,共享同一中继的多个生物传感器以及通过多个备用中继与汇聚设备通信的生物传感器会在不同的FDEP组之间产生相关性。此外,中继的局部故障与相关生物传感器的传播故障之间存在时域竞争。相关性和竞争都使BSN的可靠性建模和分析变得复杂。这项工作提出了一种组合分析方法来解决BSN可靠性分析中的这两种影响。通过详细的案例研究展示了所提出的方法,并使用连续时间马尔可夫链方法进行了验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8366/10089672/0ad9344003f0/gr1_lrg.jpg

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