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[ "方效林(1984-),男,博士,东南大学讲师,主要研究方向为传感网数据传输协议、传感网大数据分析处理技术以及传感器网络的应用等。" ]
[ "罗军舟(1960-),男,博士,东南大学教授、博士生导师,主要研究方向为下一代网络体系结构、协议工程、网络安全、无线网络、云计算与大数据等。" ]
纸质出版日期:2018-03-30,
网络出版日期:2018-03,
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方效林, 罗军舟. 体域网关键技术与新挑战[J]. 物联网学报, 2018,2(1):64-68.
XIAOLIN FANG, JUNZHOU LUO. Key technologies and new challenges on body area networks. [J]. Chinese journal on internet of things, 2018, 2(1): 64-68.
方效林, 罗军舟. 体域网关键技术与新挑战[J]. 物联网学报, 2018,2(1):64-68. DOI: 10.11959/j.issn.2096-3750.2018.00042.
XIAOLIN FANG, JUNZHOU LUO. Key technologies and new challenges on body area networks. [J]. Chinese journal on internet of things, 2018, 2(1): 64-68. DOI: 10.11959/j.issn.2096-3750.2018.00042.
随着传感器技术、低功耗集成电路技术以及无线通信技术的飞速发展,体域网成为监测人体生理参数的一个新的技术,为信息化医疗提供了新的解决方案。介绍了体域网的关键技术,并围绕能耗问题、数据传输问题、安全与隐私问题以及人体感知数据处理问题展开阐述,最后,提出了若干体域网系统需要解决的新的具有挑战性的问题。
As the rapid development of sensing
low-power integrated circuit and wireless communication techniques
body area network becomes a new technology to monitor human health
which provides a new solution for information medical treatment.The key technologies of body area network was firstly introduced
including energy consumption
data transmission
security and privacy and human health data processing.Finally
a series of new challenges in body area network systems was proposed.
体域网人体健康监测人体感知数据数据处理
body area networkhuman health monitoringbody sensing datadata processing
吴玉韶, 党俊武 . 中国老龄事业发展报告(2013)[M]. 北京: 社会科学文献出版社, 2013.
WU Y S, DANG J W . China aging development report(2013)[M]. Beijing:Social Sciences Academic Press, 2013.
朱恒顺 . 我国残疾人权利保障的理念更新与制度重构[D]. 济南:山东大学, 2016.
ZHU H S . Idea renewal and institutional reconstruction on the protection of rights of the disabled in China[D]. Jinan:Shandong University, 2016.
GHAMARI M, JANKO B, SHERRATT R S . A survey on wireless body area networks for eHealthcare systems in residential environments[J]. Sensors, 2016,16(6):831.
MOVEASSAGHI S, ABOLHASAN M, LIPMAN J . Wireless body area networks:a survey[J]. IEEE Communications Surveys & Tutorials, 2014,16(3): 1658-1686.
SHI X, STROMBERG G . SyncWUF:an ultra low-power MAC protocol for wireless sensor networks[J]. IEEE Transactions on Mobile Computing, 2007,6(1): 115-125.
GAO H, FANG X L, LI J Z . Data collection in multi-application sharing wireless sensor networks[J]. IEEE Transactions on Parallel and Distributed Systems, 2015,26(2): 403-412.
PANG A, BANNATYNE R . The energy harvesting tipping point for wireless sensor applications[J]. Instrumentation,Measurement,Circuits and Systems, 2012(127): 387-391.
BANSAL N, CHAN H L, PRUHS K . Speed scaling with a solar cell[J]. Theoretical Computer Science, 2013,410(45): 4580-4587.
SHAN F, LUO J Z, SHEN X J . Optimal energy efficient packet scheduling with arbitrary individual deadline guarantee[J]. Computer Networks, 2014,(75): 351-366.
SAKR A H, HOSSAIN E . Analysis of K-tier uplink cellular networks with ambient RF energy harvesting[J]. IEEE Journal on Selected Areas in Communications, 2015,33(10): 2226-2238.
WU T Q, YANG H C . On the performance of overlaid wireless sensor transmission with RF energy harvesting[J]. IEEE Journal on Selected Areas in Communications, 2015,33(8): 1693-1705.
PAN R, CHUA D, PATHMASUNTHARAM J S . An opportunistic relay protocol with dynamic scheduling in wireless body area sensor network[J]. IEEE Sensors Journal, 2015,15(7): 3743-3750.
QUWAIDER M, BISWAS S . DTN routing in body sensor networks with dynamic postural partitioning[J]. Ad Hoc Networks, 2013,8(8): 824-841.
TANG Q, TUMMALA N, GUPTA S K S . Communication scheduling to minimize thermal effects of implanted biosensor networks in homogeneous tissue[J]. IEEE Transactions on Biomedical Engineering, 2009(52): 1285-1294.
OEY C H W, MOH S . A survey on temperature-aware routing protocols in wireless body sensor networks[J]. Sensors, 2013,13(8): 9860-9877.
KARTHIKEYAN M V, MANICKAM J M L . Security issues in wireless body area networks:in bio-signal input fuzzy security model:a survey[J]. Research Journal of Pharmaceutical Biological & Chemical Sciences, 2016,7(6): 1755-1773.
LI M, LOU W J, REN K . Data security and privacy in wireless body area networks[J]. IEEE Wireless Communications, 2010,17(1): 51-58.
SALEEM S, ULLAH S, KWAK K S . A study of IEEE 802.15.4 security framework for wireless body area networks[J]. Sensors, 2011,11(2): 1383-1395.
SALEEM S, ULLAH S, YOO H S . On the security issues in wireless body area networks[J]. International Journal of Digital Content Technology and its Applications, 2009(3): 178-184.
JINDAL A, PSOUNIS K . Modeling spatially correlated data in sensor networks[J]. ACM Transactions on Sensor Networks, 2013,2(4): 466-499.
LI J Z, CHENG S Y . (ε-δ)-approximate aggregation algorithms in dynamic sensor networks[J]. IEEE Transaction on Parallel Distributed Systems, 2012,23(3): 385-396.
ALIPPI C, ANASTASI G, FRANCESCO M D . An adaptive sampling algorithm for effective energy management in wireless sensor networks with energy hungry sensors[J]. IEEE Transactions on Instrumentation and Measurement, 2013,59(2): 335-344.
WU W, CHENG X, DING M . Localized outlying and boundary data detection in sensor networks[J]. IEEE Transactions on Knowledge and Data Engineering, 2010,19(8): 1145-1157.
GUPTA M, GAO J, AGGARWAL C C . Outlier detection for temporal data:a survey[J]. IEEE Transactions on Knowledge and Data Engineering, 2014,26(9): 2250-2267.
HUBERT M, ROUSSEEUW P J, SEGAERT P . Multivariate functional outlier detection[J]. Statistical Methods & Applications, 2015,24(2): 177-202.
PIRES I M, GARCIA N M, POMBO N . From data acquisition to data fusion:a comprehensive review and a roadmap for the identification of activities of daily living using mobile devices[J]. Sensors, 2016,16(2):184.
GRAVINA R, ALINIA P, GHASEMZADEH H . Multi-sensor fusion in body sensor networks:state-of-the-art and research challenges[J]. Information Fusion, 2016(35): 68-80.
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