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  1. NTU Theses and Dissertations Repository
  2. 電機資訊學院
  3. 資訊工程學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/35365
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dc.contributor.advisor高成炎
dc.contributor.authorYou-Rui Wuen
dc.contributor.author武又瑞zh_TW
dc.date.accessioned2021-06-13T06:49:45Z-
dc.date.available2006-07-24
dc.date.copyright2005-08-01
dc.date.issued2005
dc.date.submitted2005-07-28
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[2] C. J. L. Murray, A. D. Lopez, Harvard School of Public Health., World Health Organization., and World Bank., The global burden of disease: a comprehensive assessment of mortality and disability from diseases, injuries, and risk factors in 1990 and projected to 2020. Cambridge, MA: Published by the Harvard School of Public Health on behalf of the World Health Organization and the World Bank; Distributed by Harvard University Press, 1996.
[3] F. Beltrame, 'Worldwide emergency telemedicine services: the R&D EU projects perspective,' Proceedings of the IEEE Engineering in Medicine and Biology Society Region 8 International Conference, pp. 3-6, 1997.
[4] I. F. Akyildiz, W. L. Su, Y. Sankarasubramaniam, and E. Cayirci, 'A survey on sensor networks,' IEEE Communications Magazine, vol. 40, pp. 102-114, 2002.
[5] V. Shnayder, B.-r. Chen, K. Lorincz, T. R. F. Fulford-Jones, and M. Welsh, 'Sensor Networks for Medical Care,' Technical Report TR-08-05, Division fo Engineering and Applied Sciences, Harvard University, 2005.
[6] R. S. H. Istepanian, E. Jovanov, and Y. T. Zhang, 'Introduction to the special section on m-Health: Beyond seamless mobility and global wireless health-care connectivity,' IEEE Transactions on Information Technology in Biomedicine, vol. 8, pp. 405-414, 2004.
[7] E. Jovanov, J. Price, D. Raskovic, K. Kavi, T. Martin, and R. Adhani, 'Wireless personal area network in telemedical environment,' Proc. IEEE/EMBS Int. Conf. Inf. Technol. Applicat. Biomed. Arlington, pp. 22-27, 2000.
[8] Wei Ye, John Heidemann, and D. Estrin, 'An Energy-Efficient MAC protocol for Wireless Sensor Networks,' Proceedings of the IEEE Infocom, pp. 1567-1576, 2001.
[9] R. Min, M. Bhardwaj, S.-H. Cho, N. Ickes, E. Shih, A. Sinha, A. Wang, and A. Chandrakasan, 'Energy-centric enabling technologies for wireless sensor networks,' IEEE Wireless Communications, vol. 9, pp. 28-39, 2002.
[10] Loren Schwiebert and S. K. S. Gupta, 'Research Challenges in Wireless Networks of Biomedical Sensors,' Proc. ACM/IEEE Conf. on Mobile Computing and Networking (MOBICOM), pp. 151-165, 2001.
[11] ILKKA KORHONEN, JUHA PÄRKKÄ, and M. V. GILS, 'Health Monitoring in the Home of the Future,' Eng Med Biol Mag, vol. 22, pp. 66-73, 2003.
[12] G. C. Crumley, N. E. Evans, W. G. Scanlon, J. B. Burns, and T. G. Trouton, 'The design and performance of a 2.5-GHz telecommand link for wireless biomedical monitoring,' IEEETransactions on Information Technology in Biomedicine, vol. 4, pp. 285-291, 2000.
[13] S. de Lusignan, A. Althans, S. Wells, P. Johnson, M. Vandenburg, and J. Robinson, 'A pilot study of radiotelemetry for continuous cardiopulmonary monitoring of patients at home,' Journal of Telemedicine and Telecare, vol. 6, pp. 119-122, 2000.
[14] F. A. Spelman, C. A. Astley, E. V. Golanov, J. J. Cupal, A. R. Henkins, E. Fonzo, T. G. Susor, G. Mcmorrow, D. M. Bowden, and O. A. Smith, 'A System to Acquire and Record Physiological and Behavioral-Data Remotely from Nonhuman-Primates,' IEEE Transactions on Biomedical Engineering, vol. 38, pp. 1175-1185, 1991.
[15] R. S. H. J. Istepanian, E.; Zhang, Y.T., 'Guest Editorial Introduction to the Special Section on M-Health: Beyond Seamless Mobility and Global Wireless Health-Care Connectivity,' IEEE Transactions on Information Technology in Biomedicine, vol. 8, pp. 405-414, 2004.
[16] J. C. Haartsen, 'The Bluetooth radio system,' IEEE Personal Communications, vol. 7, pp. 28-36, 2000.
[17] E. Jovanov, A. Milenkovic, C. Otto, and P. C. d. Groen, 'A wireless body area network of intelligent motion sensors for computer assisted physical rehabilitation,' Journal of NeuroEngineering and Rehabilitation, 2005.
[18] Ed Callaway, P. Gorday, L. Hester, J. A. Gutierrez, M. Neave, and V. B. B. Heile, 'Home networking with IEEE 802.15.4: A developing standard for low-rate wireless personal area networks,' IEEE Communication Magazine, vol. 40, pp. 70-77, 2002.
[19] A. L. Shun-Chuan Chen, Hsuan-Wei Chen, Kuo-Hao Chao, Yu-Cheng Huang and Feipei Lai, 'E-Vanguard for Emergency - A Wireless System for Rescue and Healthcare,' 5th International Workshop on Enterprise Networking and Computing in Healthcare Industry, 2003.
[20] A. M. Emil Jovanov, Chris Otto, Piet C de Groen, 'A wireless body area network of intelligent motion sensors for computer assisted physical rehabilitation,' Journal of NeuroEngineering and Rehabilitation, 2005.
[21] V. Shankar, A. Natarajan, S. K. S.Gupta, and L. Schwiebert, 'Energy-efficient Protocols for Wireless Communication in Biosensor Network,' 12th IEEE International Symposium on Personal, Indoor and Mobile Radio Communication, pp. D-114--D-118, 2001.
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[23] A. P. I. E. Lamprinos, E. Sakka, D. Koutsouris, 'A Low Power Medium Access Control Protocol for Wireless Medical Sensor Networks,' Proceedings of the 26th Annual International Conference of the IEEE EMBS, 2004.
[24] B.-r. C. Victor Shnayder, Konrad Lorincz, Thaddeus R. F. Fulford-Jones, and Matt Welsh, 'Sensor Networks for Medical Care,' Technical Report TR-08-05, Division fo Engineering and Applied Sciences, Harvard University, 2005.
[25] S.-C. Chen, A. Lee, H.-W. Chen, K.-H. Chao, Y.-C. Huang, and F. Lai, 'E-Vanguard for Emergency - A Wireless System for Rescue and Healthcare,' 5th International Workshop on Enterprise Networking and Computing in Healthcare Industry, 2003.
[26] D. Raskovic, T. Martin, and E. Jovanov, 'Medical monitoring applications for wearable computing,' Computer Journal, vol. 47, pp. 495-504, 2004.
[27] J. H. W. Ye, D. Estrinn, 'Medium Access Control With Coordinated Adaptive Sleeping for Wireless Sensor Network,' IEEE/ACM Transactions on Networking, vol. 12, 2004.
[28] lan F. Akyildiz, WellJan Su, Yogesh Sankarasubramaniam, and E. Cayirci, 'A Survey on Sensor Networks,' IEEE Communications Magazine, 2002.
[29] M. G. [6]. T. J. Kwon, V. K. Varma, M. Barton, and T. R. Hsing, 'Efficient Flooding with Passive Clustering – An Overhead-Free Selective Forward Mechanism for Ad Hoc/Sensor Networks,' IEEE Proceeding, vol. 91, pp. 1210-1220, 2003.
[30] T. Y. Lin and Y. C. Tseng, 'An Adaptive Sniff Scheduling Scheme for Power Saving in BlueTooth,' IEEE Wireless Commun. Mag., pp. 92-103, 2002.
[31] D. Dhoutaut and I. G. Lassous, 'Experiments with 802.11b in ad hoc configurations,' Proceeding of 14th IEEE International Symposium on Personal Indoor and Mobile Radio Communications (PIMRC 2003), pp. 1618-1622, 2003.
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[34] D. Boling, Programming Microsoft Windows CE.NET, 3rd ed: Microsoft Press, 2003.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/35365-
dc.description.abstract由台灣經濟部資助的先進無線生醫保健監測系統(簡稱WHAM-BioS)計畫,是由於長期的監測病人的健康狀況而生。這篇論文的目標在設計並實作一個監測病人健康狀態的省電無線感測網路。為了降低感測節點的設計與硬體複雜度與能量消耗,多數的網路功能被集中在一個稱為人體閘道(HBG)的特殊目的的裝置。此裝置管理一個病人的感測節點,並將此病人的健康狀態向前傳輸,以供生物資訊之分析。為了降低感測節點與人體閘道間通訊的干擾之能源浪費,這篇論文提出了一些網路協定,讓人體閘道可以確保這些通訊間不會產生干擾。此外,這篇論文提出了一個省電機制來更進一步的降低感測節點在閒置監聽(idle listening)上的能量消耗。系統的軟體是以一個引入了一個中介層的分層化方式來實作的。此中介層將作業系統所提供的較低階的功能抽象化並提供一個更高階的介面給應用程式,此介面讓應用程式可以彼此互相通訊而不用考慮它們位於哪裡,以方便實作。我們已經根據所提出的網路與分層軟體架構來實作了一個健康照護系統的雛型,並使用藍芽與IEEE 802.11分別用來做叢集內與叢集間通訊。zh_TW
dc.description.abstractThe Wireless Health Advanced Mobile Bio-diagnostic System (abbreviated as WHAM-BioS) project, which is supported by Taiwan’s Ministry of Economic Affairs have arisen from the need to monitor the health status of patients under long-term care programs. This thesis aims at designing and implementing an energy efficient wireless sensor network for monitoring the health status of the patients. To reduce the design and hardware complexity and power consumption of the sensor nodes, most network functionalities were concentrated in a special purposed device called Human Body Gateway (HBG) that administrates the sensor nodes of a single patient and transmit the health status of the patient forward for bioinformatics analysis. To reduce energy waste on interfered communications between sensor nodes and their HBG, network protocols were proposed in this thesis for the HBGs to insure that these communications will not interfere with each other. In addition, to further reduce the power consumption on idle listening of the sensor nodes, a power saving mechanism is proposed in this thesis. The software of the system is implemented in a layered fashion that introduces a middleware layer which abstracts the lower level functionalities of the operating system and exposes a higher level interface to the applications. The interface facilitates the applications to communicate with each other regardless where they reside to ease the implementation effort. We had implemented a health telecare system prototype based on the proposed network and layered software architecture and use Bluetooth and IEEE 802.11 for inner and inter cluster communication respectively.en
dc.description.provenanceMade available in DSpace on 2021-06-13T06:49:45Z (GMT). No. of bitstreams: 1
ntu-94-R92922048-1.pdf: 1062924 bytes, checksum: dca2702cde838aeae56003ee873106c1 (MD5)
Previous issue date: 2005
en
dc.description.tableofcontents誌謝......................................................i
摘要....................................................iii
Abstract..................................................v
Table of Contents.......................................vii
List of Figures..........................................ix
Chapter 1. Introduction...................................1
1.1. Introduction......................................1
1.2. Research Challenges...............................4
1.3. Thesis Organization...............................6
Chapter 2. Related Works..................................9
2.1. Standard Solutions for Sensor Communication.......9
2.2. Nonstandard Custom Solutions for Sensor Communicatio.............................................12
2.3. Multihop Network Architecture Solutions..........14
Chapter 3. System Architecture and Design................17
3.1. System Requirement 17
3.2. Network Architecture 19
3.3. The Power Saving Mechanism 22
3.4. The Inner Cluster Communication Protocols 24
3.4.1. Active Interval 25
3.4.2. Resynchronization of Sensor Nodes 27
3.5. The Inter Cluster Communication Protocols 30
3.5.1. Adjacent Relationship 31
3.5.2. Protocol Design 33
3.5.3. Requesting an Active Interval 34
3.5.4. Announce and Listen 37
3.5.5. Exception Handling for Inhibited Inner Cluster Communication 38
3.5.6. Example 40
Chapter 4. System Prototype Implementation...............43
4.1. Hardware.........................................43
4.2. Development Environment..........................46
4.3. System Architecture..............................46
4.4. The Physical Device Layer........................48
4.5. The System Layer.................................51
4.6. The Middleware Layer.............................52
4.6.1. The Sensor Middleware.......................53
4.6.2. The Database Middleware.....................54
4.6.3. The Network Middleware......................58
4.7. The Application Layer............................59
4.7.1. The Bootstrap Loader........................60
4.7.2. The Network Receiver and Command Interface ...............................................61
4.7.3. The Upload Application and the Detection Result Receiver..........................................63
4.7.4. The Sensor Application......................64
4.7.5. The Inter Cluster Communication Protocols ..............................................66
Chapter 5. Conclusion and Future Work....................69
5.1. Conclusion.......................................69
5.2. Future Work......................................70
Bibliography.............................................73
Index....................................................77
dc.language.isoen
dc.subject干擾zh_TW
dc.subject無線感測網路zh_TW
dc.subject遠距照護zh_TW
dc.subject叢集化zh_TW
dc.subjectinterferenceen
dc.subjecte-healthen
dc.subjectm-healthen
dc.subjectwireless sensor networken
dc.subjecthealth telecareen
dc.subjectclustereden
dc.title以遠距照護與診斷輔助為應用之無線感測網路設計與實作zh_TW
dc.titleWireless Sensor Network Design and Implementation for Health Telecare and Diagnosis Assistance Applicationsen
dc.typeThesis
dc.date.schoolyear93-2
dc.description.degree碩士
dc.contributor.oralexamcommittee洪炯宗,呂學士,陳朝欽,廖宜恩
dc.subject.keyword無線感測網路,遠距照護,叢集化,干擾,zh_TW
dc.subject.keywordwireless sensor network,health telecare,clustered,interference,m-health,e-health,en
dc.relation.page79
dc.rights.note有償授權
dc.date.accepted2005-07-28
dc.contributor.author-college電機資訊學院zh_TW
dc.contributor.author-dept資訊工程學研究所zh_TW
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