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  1. NTU Theses and Dissertations Repository
  2. 工學院
  3. 機械工程學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/29753
完整後設資料紀錄
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dc.contributor.advisor顏家鈺(Jia-Yush Yen)
dc.contributor.authorKuan-Ming Linen
dc.contributor.author林冠名zh_TW
dc.date.accessioned2021-06-13T01:17:29Z-
dc.date.available2008-07-27
dc.date.copyright2007-07-27
dc.date.issued2007
dc.date.submitted2007-07-17
dc.identifier.citation[1] L. Higgins, L. G. Bahler, and J. E. Porter, “Voice identification using nearest-neighbor distance measure” ,in Proc. ICASSP, 1993,pp. 375-378.
[2] F. Soong et al., “A vector quantization approach to speaker recognition” ,in Proc. IEEE ICASSP, 1985, pp.387-390.
[3] E.J. R.S.H.Istepanian, 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.
[4] Ren-Guey Lee, Kuei-Chien Chen, Chun-Chieh Hsiao, and Chwan-Lu Tseng, “A Mobile Care System with Alert Mechanism” IEEE 2006 (accept).
[5] S. Led, J. Fernandez and L. Serrano, “Design of a Wearable Device for ECG Continuous Monitoring Using Wireless Technology,” Proceedings of the 26th Annual international Conference of the IEEE EMBS San Francisco, CA, USA, September 1-5, 2004.
[6] I. Korhonen, J. Parkka, and M. van Gils, “Health monitoring in the home of the future,” IEEE Eng. Med. Biol. Mag., vol. 22, no. 3, pp. 66-73, May/June 2003.
[7] Y. H. Nam, Z. Halm, Y. J. Chee, K. S. Park, “Development of Remote Diagnosis System Integrating Digital Telemetry for Medicine,” Proceedings of the 20th Annual international Conference of the IEEE Engineering in Medicine and Biology Society, Vol. 20, NO 3, 1998.
[8] Yong Zhang, Jie-sheng Wang, Xue-bo Chen, “ Application on intelligent analysis for ECG signals by adopting wavelet transform” ,Proceedings of the 4th World Congress on Intelligent Control and Automation, 2002, Volume: 3 , 10-14 June 2002 ,P2085 - 2089 vol.3.
[9] A.K.J.a.R.C. Dubes, Algorithms for clustering data, Prentice Hall, NewJersey, 1988.
[10] J.Bezdek, Fuzzy Mathematics in Pattern Classification, UMI, Ann Arbor, 1973.
[11] J.C. Bezdek, Pattern recognition with fuzzy objective function algorithm, Plenum, New York, 1981.
[12] N.B. Karayiannis, Generalized Fuzzy C-means Algorithms, Journal of Intelligent and Fuzzy Systems, vol.8, pp. 63-81, 2000.
[13] Ming-Hui Jin, Ren-Guey Lee, Cheng-Yan Kao, You-Rui Wu, D. Frank Hsu, Tse-Ping Dong, Kuan-Tsae Huang, Sensor Network Design and Implementation for Health Telecare and Diagnosis Assistance Applications, ICPADS, pp. 407-411, 2005.
[14] http://www.iee.org/Policy/Areas/Y2K/w-43.cfm
[15] http://msdn.microsoft.com/library/
[16] D. Boling, Programming Microsoft Windows CE.NET, Microsoft Press, 2003.
[17] http://fsforth.de/
[18] http://en.wikipedia.org/wiki/Electrocardiogram/
[19] http://www.mysql.com/
[20] http://www.physionet.org/cgi-bin/chart
[21] http://www.microsoft.com/windows/embedded/ce.net/
[22] http://www.socket.com
[23] http://www.sychip.com
[24] S. Haykin, Communication Systems, Prentice Hall, 2000.
[25] S.L.M. Jr., Digital Spectral Analysis with applications, Prentice Hall, 1987.
[26] S.M. Kay, Modern Spectral Estimatioin -- theory & application, Prentice Hall, 1988.
[27] http://www.cs.joensuu.fi/pages/franti/vq/algorithms.htm
[28] http://www.statsoft.com/textbook/stcluan.html
[29] B.S. Everitt , “Cluster Analysis”, John Wiley & Sons,Inc. , New York 1974.
[30] 張瑋茜, Embedded System Technology for Monitoring Biomedical Signals, National Taiwan University, 2006.
[31] 武又瑞, Wireless Sensor Network Design and Implementation for Health Telecare and Diagnosis Assistance Applications, National Taiwan University, 2005.
[32] 張銘偉, Novel Approach to Fuzzy-Wavelet EKG Signal Analysis, National Taiwan University, 2005.
[33] 葉宏材, 陳峙柟, Windows CE.NET嵌入式程式設計 -- 工業用控制器及自動控制系統設計, 文魁資訊股份有限公司, 2004.
[34] 鍾慶諺, Research on Wavelet Analysis for Embedded Health Monitoring System, National Taiwan University, 2004.
[35] 張義和, 電腦輔助設計電路圖設計OrCAD Capture V9.0, 台科大圖書股份有限公司, 2004.
[36] 張義和, 電腦輔助電路板設計OrCAD Layout Plus V9.0, 台科大圖書股份有限公司, 2005.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/29753-
dc.description.abstract本論文以國立台灣大學的無線生醫奈米生醫檢測系統為發展中心,其中包括了三個部分植入式的體內感測器、無線生醫監控裝置和遠端健康監控伺服中心,本文中實現了以嵌入式ARM9模組為核心來設計周邊電路建構出一個無線生醫監控裝置的構想,裝置上架設Windows CE為作業系統,並且在無線生醫監控裝置上建構一初步訊號檢測系統,然後在健康監控伺服中心做更進一步的訊號診斷分析,並以心電圖來做為我們檢測的訊號的依據,其中訊號分析主要以頻譜估測和模糊群聚分析來作為生醫訊號檢測判斷的理論基礎。zh_TW
dc.description.abstractThis thesis develops a mobile transceiver for the NTU Wireless Health Advanced Monitoring Bio-Diagnosis System (WHAM-BioS). The system embeds one or more body-sensors into patient bodies and uses the mobile transceiver as a relay station to gather the bio-medical information and to relay the information up to the internet. The previous researches have developed the necessary fundamental technologies. This thesis realizes the technology into a small 7cm x 5.5cm device. The device is Win-CE based and runs on battery power for mobility. It is not only capable of relaying the data but can also perform preliminary biomedical signal analysis. This thesis demonstrated the embedded function on the device for preliminary ECG analysis. We use frequency spectrum templates as the basis for comparison and perform autoregressive model identification on the signals. Analysis results show that our device achieves conservative judgments which are necessary for safety operation.en
dc.description.provenanceMade available in DSpace on 2021-06-13T01:17:29Z (GMT). No. of bitstreams: 1
ntu-96-R94522820-1.pdf: 6293110 bytes, checksum: ed1f8c6cee420a6cee0350d8af3aefe4 (MD5)
Previous issue date: 2007
en
dc.description.tableofcontents摘要 Ⅰ
abstract Ⅱ
目錄 Ⅲ
圖目錄 Ⅵ
表目錄 Ⅸ
第一章 緒論 1
1.1 前言 1
1.2 研究動機與目的 1
1.3 文獻回顧 2
1.4 論文架構 5
1.5 貢獻 6
第二章 系統架構與環境 7
2.1 系統架構 7
2.2 硬體架構 8
2.2.1 架構說明 8
2.2.2 嵌入式系統定義與目標 9
2.2.3 A9M2410發展版 10
2.2.4 SD無線網卡 13
2.3 軟體架構 14
2.3.1 Windows CE作業系統 14
2.3.2 Windows CE 應用程式發展環境 14
2.3.3 伺服端應用程式發展環境 18
第三章 Windows CE 21
3.1 Windows CE 簡介 21
3.1.1 Windows CE特點[33] 21
3.1.2 Windows CE 重要功能[21] 22
3.2 Windows CE平台開發架構 24
3.3 Windows CE平台開發環境介紹—Platform builder 25
3.3.1 Platform builder簡介及重要功能 25
3.3.2 使用Platform builder建立一個新的平台[17][30] 25
3.3.3 平台設定(Platform Setting) 32
3.3.4 建立Windows CE映像檔(Build Windows CE image) 33
3.3.5 設定系統發展套件(Configure System Development Kit) 34
3.3.6 下載Windows CE映像檔至目標位置(Download Windows CE image) 35
第四章 系統電路設計 37
4.1 電路設計簡介 37
4.2 電路設計軟體發展與簡介—OrCAD 38
4.3 電路設計流程與環境[35][36] 38
4.4 裝置電路架構設計 41
4.4.1 電路設計部分—OrCAD Capture 42
4.4.1.1 接收部分(Serial port) 42
4.4.1.2 傳送部分(Ethernet&Wireless) 45
4.4.1.3 電源與重置部分(Power Supply&Reset) 47
4.4.1.4 USB的部分 48
4.4.1.5 ARM9模組插槽部分 49
4.4.2 電路佈線部分—OrCAD Layout 51
4.4.3 電路設計實現 55
第五章 訊號分析理論 57
5.1 隨機程序(Random process) 57
5.2 頻譜估測(Spectral Estimation) 63
5.2.1 古典頻譜估測(Classical Spectral Estimation) 63
5.2.2 參數頻譜估測(Parametric Spectral Estimation) 65
5.3 群聚分析[12][27][28] 71
5.3.1 群聚分析演算法介紹 73
5.3.2 模糊C-means分群演算法 75
第六章 無線生醫裝置實現 77
6.1 軟硬體的實驗 77
6.1.1 硬體電路及作業系統測試 77
6.1.2 軟硬體整合測試 83
6.2 ECG訊號分析實驗 88
6.2.1 心電圖(Electrocardiogram, ECG or EKG)概說 88
6.2.2 ECG訊號分析 90
第七章 討論與未來展望 103
7.1 討論 103
7.2 未來展望 104
參考書目 105
dc.language.isozh-TW
dc.title無線生醫檢測平台之嵌入式行動裝置實現zh_TW
dc.titleImplementation of Embedded Mobile Device on Wireless Bio-Diagnosis Platformen
dc.typeThesis
dc.date.schoolyear95-2
dc.description.degree碩士
dc.contributor.oralexamcommittee吳光鐘(Kuang-Chong Wu),陳永耀(Yung-Yaw Chen)
dc.subject.keywordWindows CE,嵌入式系統,頻譜估,群聚分析,電路設計,生醫訊號檢測系統,心電圖,zh_TW
dc.subject.keywordWindow CE,Embedded system,Spectral Estimation,Fuzzy Clustering,Circuit design,Biomedical Diagnosis,Electrocardiogram,en
dc.relation.page107
dc.rights.note有償授權
dc.date.accepted2007-07-19
dc.contributor.author-college工學院zh_TW
dc.contributor.author-dept機械工程學研究所zh_TW
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