簡易檢索 / 詳目顯示

研究生: 靳靜慧
CHIN, Ching-Hui
論文名稱: 探討臺灣以物聯網建構智慧家庭創新策略之研究
Research on the Innovation Strategy of Building Smart Home with the Internet of Things in Taiwan
指導教授: 蘇友珊
Su, Yu-Shan
學位類別: 碩士
Master
系所名稱: 工業教育學系
Department of Industrial Education
論文出版年: 2020
畢業學年度: 108
語文別: 中文
論文頁數: 152
中文關鍵詞: 物聯網智慧家庭創新策略創新生態系統多層次決策分析法
英文關鍵詞: Internet of Things (IoT), Smart home, Innovation Strategy, Innovation Ecosystem, Hierarchical Decision Modeling
DOI URL: http://doi.org/10.6345/NTNU202001018
論文種類: 學術論文
相關次數: 點閱:188下載:0
分享至:
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報
  • 隨著科技的進步,人們更注重於家庭生活中的應用,智慧家庭產品已經逐漸步入人們的生活之中,因為行動通訊與物聯網的技術日新月異,加快智慧家庭發展速度。本研究結合創新生態系統分析臺灣以物聯網建設智慧家庭的創新策略,並歸納出五大構面與二十四項準則,五大構面分別為智慧安全、智慧生活、智慧裝置、智慧雲端、智慧感測。
    本研究問卷發放對象為學術界、產業界、政府機關、研究單位中具備物聯網與智慧家庭相關背景之23位專家。利用多層次決策分析法( Hierarchical Decision Modeling ),評估臺灣以物聯網建構智慧家庭的創新策略架構中,除了構面之間與準則之間的相對權重與一致性,還需評估權重排序,提供決策者判斷優先創新策略。
    本研究結論得知五大構面中以智慧安全為優先創新策略,接續為智慧生活、智慧感測、智慧裝置及智慧雲端;五大構面底下準則之優先創新策略分述如下:一、智慧安全構面下為資訊安全及隱私權、災害及防盜示警系統、生物識別系統及遠端監控系統;二、智慧生活構面下為居家照護、環境控制、能源管理、情境控制及家庭數位娛樂;三、智慧感測構面下為氣體濃度感測、門窗感測、人體動態感測、圖像感測、光線感測、聲音感測及溫溼度感測;四、智慧裝置構面下為智慧醫療器材、家庭服務機器人、智慧聯網家電、智慧音箱及智慧電視;五、智慧雲端構面下為雲端檔案系統、雲端運算及數據蒐集及分析。本研究結論可為臺灣以物聯網建構智慧家庭的創新策略提供未來方向。

    With the advancement of technology, people pay more attention to the application in family life, and smart home products have gradually entered into people's lives, because the technology of mobile communication and the Internet of Things (IoT) is changing with each passing day, accelerating the development of smart homes. This research combines innovative ecological theory to analyze Taiwan’s innovative strategies for building smart homes with the Internet of Things, and summarizes five major aspects and 24 criteria. The five major aspects are smart security, smart life, smart device, smart cloud, and sense of wisdom. Measurement.
    This research questionnaire is distributed to 23 experts in the academic, industrial, government, and research units with backgrounds related to the Internet of Things and smart homes. Using the Hierarchical Decision Modeling to evaluate Taiwan’s innovative strategy architecture for building smart homes with the Internet of Things, in addition to the relative weight and consistency between the facets and the criteria, it is also necessary to evaluate the weight ranking and provide decision-making the judge judges the priority innovation strategy.
    The conclusion of this study is that among the five facets, smart security is the priority innovation strategy, followed by smart life, smart sensing, smart devices and smart cloud; the priority innovation strategies under the five major dimensions are described below: 1. Smart security Under the aspect of information security and privacy, disaster and anti-theft warning system, biometric identification system and remote monitoring system; 2. under the smart life aspect is home care, environmental control, energy management, situation control and family digital entertainment; 3. Under the smart sensing interface, gas concentration sensing, door and window sensing, human body motion sensing, image sensing, light sensing, sound sensing, and temperature and humidity sensing; 4. Under the smart device structure, it is smart medical equipment, home service robots, smart connected home appliances, smart speakers, and smart TVs. 5. Under the smart cloud structure, it is the cloud file system, cloud computing, and data collection and analysis. The conclusion of this study can provide the future direction for Taiwan’s innovative strategy of building smart homes with the Internet of Things.

    謝誌 i 摘要 ii Abstract iii 目次 v 表次 vii 圖次 viii 第一章 緒論 1 第一節 研究背景與動機 1 第二節 研究目的 3 第三節 研究流程 3 第二章 文獻探討 7 第一節 創新策略之定義與研究 7 第二節 創新生態系統之定義與研究 11 第三節 物聯網之發展趨勢 21 第四節 智慧家庭產業之發展現況 35 第五節 以物聯網建構智慧家庭創新策略之構面與準則 46 第三章 研究方法 75 第一節 多層次決策分析法 75 第二節 判斷量化分析 81 第三節 一致性分析 82 第四節 研究對象 83 第五節 研究有效性 86 第六節 研究構面與準則 87 第四章 資料分析與研究結果 91 第一節 研究模型 93 第二節 研究結果與數據分析 94 第五章 研究發現與討論 115 第一節 主要研究發現 115 第二節 研究貢獻 119 第三節 研究限制 123 第四節 未來研究方向 124 第六章 研究結論與建議 127 第一節 智慧家庭之創新生態發展 127 第二節 智慧家庭五大構面之綜述 128 第三節 智慧家庭之研究建議 129 參考文獻 131 附錄 專家問卷 147

    一、中文文獻
    工業技術研究院(2019)。智慧醫療的前在應用與商業考量。取自https://ictjournal.itri.org.tw/Content/Messagess/contents.aspx? &MmmID=654304432122064271&CatID=654313611331661503&MSID=1036010440002263134
    王文娟(2016)。物聯網概念及應用。經濟前瞻,168,29-36。
    王俊傑(2019)。LoRa無線感測網路智慧防盜系統(未出版之碩士論文)。國立臺北科技大學,臺北市。
    司徒達賢(1995)。策略管理。臺北:遠流出版社。
    田國會、李曉磊、趙守鵬、路飛(2007)。家庭服務機器人智慧空間技術研究與進展。山東大學學報(工學版),37(5),53-59。
    白麗、鄭家凱、林恩如、陳思宇、張譯雲、徐業良(2018)。陪伴型機器人使用者經驗評估–以智慧居家機器人Zenbo為例。福祉科技與服務管理學刊,6(3),265-282。
    行政院科技會報(2005)。智慧化居住空間發展策略。取自https://bost.ey.gov.tw/Upload/UserFiles/%E8%AD%B0%E9%A1%8C%E4%BA%8C%EF%BC%9A1.3%E6%99%BA%E6%85%A7%E5%8C%96%E5%B1%85%E4%BD%8F%E7%A9%BA%E9%96%93%E7%99%BC%E5%B1%95%E7%AD%96%E7%95%A5.pdf
    李國徽、陳瑞文、徐雅蕙、劉翠萍、張瑞玲、黃瑞星、…李家昶(2018)。智慧照護-樂齡陪伴機器人之智慧感知技術探索。電腦與通訊,175,14-20。
    吳仁智、鄭聖夫(2016)。網路攝影機於智慧家庭之應用。電工通訊季刊,2016(4),66-70。
    吳思華(2000)。策略九說:策略思考的本質。臉譜出版社。
    邱是芳(2016)。物聯網應用逐步崛起,將成為影響全球電子產業未來發展的重要關鍵。今日合庫,501。取自http://www.tier.org.tw/achievements/pec3010.aspx?GUID=a0f371d8-014b-4ee7-a500-72db21a5328b
    林群富(2016)。物聯網將夢想中的智慧家庭帶往何處。儀科中心簡訊,133,15-17。
    林品萱(2014)。智慧電視操作模式之使用者經驗研究(未出版之碩士論文)。國立臺北科技大學,臺北市。
    林世宏(2014)。雲端檔案系統之比較研究(未出版之碩士論文)。國立中山大學,高雄市。
    柳印懌(2013)。二氧化錫奈米柱氣體感測器製作與氣體感測性能(未出版之碩士論文)。南臺科技大學,臺南市。
    科技產業實驗室(2016)。未來五年智慧家庭由四大廠商瓜分。取自https://iknow.stpi.narl.org.tw/post/Read.aspx?PostID=13119
    科技產業實驗室(2016)。下一波趨勢是將人工智慧帶入智慧家庭。取自https://iknow.stpi.narl.org.tw/post/Read.aspx?PostID=12458
    科技產業實驗室(2019)。智慧家庭裝置市場產值2023年達1920億美元。取自https://iknow.stpi.narl.org.tw/Post/Read.aspx?PostID=15982
    翁明祥、崔上麟(1998)。產品創新性、研發團隊自主性與產品創新績效關係之研究–南韓電腦產業資源依賴觀點為例。第三屆企業跨國經營管理研討會論文集。
    涂嘉俊、阮筱琪、康雅斐、康雅淑、張耀仁(2018)。以Linkit7697建構物聯網之長者智慧家居運用。TANET2018 臺灣網際網路研討會,1656-1661。
    許建隆、林子煒(2016)。物聯網之發展與信任挑戰。主計月刊,726。取自http://www.bas-association.org.tw/catalog/arts/010506022.pdf
    許卜(2014)。以抹除碼提升雲端檔案系統效能之研究(未出版之碩士論文)。國立高雄大學,高雄市。
    許修豪、林貝珊(2018)。防災資通訊之語音廣播系統與罹災經驗對居民調適行為之影響–以臺中市雙崎部落為例。災害防救科技與管理學刊,7(1),113-134。
    陳根(2015)。智慧家庭是一個充滿夢想的產業。STOCKFEEL。取自https://www.stockfeel.com.tw/%E6%99%BA%E6%85%A7%E5%AE%B6%E5%BA%AD%E6%98%AF%E4%B8%80%E5%80%8B%E5%85%85%E6%BB%BF%E5%A4%A2%E6%83%B3%E7%9A%84%E7%94%A2%E6%A5%AD/
    陳毅鴻(2015)。動態商業模式的建構與分析:以Google布局物聯網的平臺策略為例(未出版之碩士論文)。國立交通大學,新竹市。
    陳俊佑(2017)。近場電紡織壓電纖維製作與智能無電池式聲音感測元件應用(未出版之碩士論文)。國立中央大學,桃園市。
    陳宛珊(2019)。應用ANP探討影響智慧家庭可行性之關鍵因素。國立成功大學,臺南市。
    陳安家(2019)。中國物聯網系統發展研究–以智慧家居系統為案例(未出版之碩士論文)。淡江大學,新北市。
    陳宛珊(2019)。應用ANP探討影響智慧家庭可行性之關鍵因素。國立成功大學,臺南市。
    張明燦(2011)。營造業創新策略之研究-以谷合營造有限公司為例。朝陽科技大學企業管理系學位論文,1-126。
    創市際市場研究顧問(2018)。創市際「臺灣智慧家庭首重監控、智慧音箱需求度尚低」調查。取自https://www.ixresearch.com/news/news_08_27_18
    智慧家庭實驗室(2019)。智慧家庭是什麼?。取自 https://myfone.blog/what-is-smarter-home/
    智慧家庭實驗室(2019)。人臉辨識最近挺夯,看有什麼商機蘊藏在其中 。 取自https://medium.com/智慧家庭實驗室/人臉辨識最近挺夯-來看有什麼實際應用案例-d39e06691410
    資策會FIND(2010)。物聯網讓萬物互聯暢通。IBM Blue Viewpoint。取自http://www-07.ibm.com/tw/BlueView/2011apr/pdf/4_web.pdf
    資策會MIC(2015)。智慧家庭應用服務發展趨勢與市場概況。取自:http://www.compotechasia.com/uploads/special/201511/198featuremic.pdf
    資策會MIC網(2015)。智慧家庭熱潮再起。取自 https://mic.iii.org.tw/industry.aspx?id=137&list=211
    資策會(2017)。智慧穿戴創新生活解析智慧穿戴式裝置市場趨勢與創新產品應用。取自https://www.iii.org.tw/Focus/FocusDtl.aspx?f_type=2&f_sqno=Zdw7bw%2B50oGAn2GA6qArNg__&fm_sqno=13
    資策會MIC網(2017)。前瞻智慧型手機四大關鍵發展動向。取自 https://mic.iii.org.tw/industry.aspx?id=234&list=2
    資策會MIC網(2017)。科技產業關鍵趨勢。取自 https://mic.iii.org.tw/news.aspx?id=444&List=95
    資策會MIC網(2019)。智慧音箱消費者調查「育學族」是臺灣智慧音箱黃金客群,本土品牌利基-多元資費、應用情境。取自ttps://mic.iii.org.tw/news.aspx?id=523
    資策會MIC(2019)。 智慧家庭發展趨勢與應用案例分析。臺北:經濟部技術處資策會MIC,ITIS產業評析。
    楊政達(2012)。高精細X光圖像感測器之主動畫素電路的研究(未出版之碩士論文)。國立交通大學,新竹市。
    楊采蓉(2015)。IoT物聯網市場趨勢與最新技術應用。DIGITIMES。取自https://www.digitimes.com.tw/iot/article.asp?cat=130&cat1=20&cat2=50&id=0000418508_8sm60u7qlptamx9x35qe4
    葉明莉(2016)。機器人與健康照護應用。領導護理 ,17(4),3-12。
    鄒鎮帆(2013)。國外資訊系統對個人資料保護之相關作法。他山之石,13(2),62-70。
    褚志鵬(2009)。Analytic Hierarchy Process Theory層級分析法(AHP)理論與實作。國立東華大學企業管理學系。取自fup://mail. im.tku.edu.tw/Prof Shyur/AHP/AHP2009.pdf
    經濟部工業局 (2018)。智慧載具產業現況。取自https://www.sipo.org.tw/industry-overview/industry-state-quo/smart-home-industry-state-quo.html
    蔡政融 ( 2016 )。物聯網行動支付之探討-Apple Pay與支付寶錢包為例(未出版之碩士論文)。國立中央大學,桃園市。
    蔡宗漢(2017)。守護家庭無微不至-智慧家庭系統。科學月刊。取自http://scimonth.blogspot.com/2016/12/blog-post_77.html
    蔡宜臻(2019)。人工智慧醫療器材軟體上市監管之法律與歐美政策概述。科技法律透析,31(10),11-16。
    鄭宜蓁(2018)。臺灣以物聯網建設智慧城市發展策略之研究(未出版之碩士論文)。國立臺北師範大學,臺北市。
    鄭福炯、王岱鑫、劉威成(2017)。 智慧物聯網系統平臺-以智慧家庭為 例。電腦稽核,35,36-49。
    賴健智(2016)。具有補償干涉儀的分布式聲音感測系統(未出版之碩士論文)。國立高雄師範大學,高雄市。
    劉佐國、李世德(2015)。個人資料保護法釋義與實務 (第二版)-如何面臨個資保護的新時代 (電子書)。碁峰資訊股份有限公司。
    劉常勇(2005)。科技創新管理。華泰書局。
    劉紹德(2019)。臺灣智慧交通創新政策之研究:以AHP及DEMATEL方法分析(未出版之碩士論文)。國立臺北師範大學,臺北市。
    鐘曉君(2011)。智慧聯網商業模式發展評析。臺北:經濟部技術處資策會MIC,ITIS 產業評析。

    二、英文文獻
    Abdulsalam, Y., Shailendra, S. M., Shamim, H., & Ghulam, M. (2019). IoT big data analytics for smart homes with fog and cloud computing. Future Generation Computer Systems, 91, 563-573.
    Adner, (2012). The Wide Lens: A New Strategy for Innovation. Penguin Publishing Group, New York.
    Adner, R., & Kapoor, R. (2010). Value creation in innovation ecosystems: how the structure of technological interdependence affects firm performance in new technology generations. Strategic Managememt Joumal, 31(3), 306-333.
    Adner, (2006). Match your innovation strategy to your innovation ecosystem. Harv. Harvard business review, 84(4), 98-107.
    Alam, M. R., Reaz, M. B. I., & Ali, M. A. M. (2012). A review of smart homes-past, present, and future. IEEE Transactions on Systems, Man, and Cybernetics, Part C (Applications and Reviews), 42(6), 1190-1203.
    Amiribesheli, M., Benmansour, A., & Bouchachia, A. (2015). A review of smart homes in healthcare. Journal of Ambient Intelligence and Humanized Computing, 6(4), 495-517.
    Ammar, M., Russello, G., & Crispal, B. (2018). Internet of Things: A survey on the security of IoT frameworks. Journal of Information Security and Applications, 38, 8-27. Doi:https:doi.org/10.1016/j.jisa.2017.11.002
    Alaa, M., Zaidan, A. A., Zaidan, B. B., Talal, M., & Kiah, M. L. M. (2017). A review of smart home applications based on Internet of Things. Journal of Network and Computer Applications, 97, 48-65.
    Arunvivek, J., Srinath, S., & Balamurugan, M. S.(2015). Framework development in home automation to provide control and security for home automated devices. Indian Journal of Science and Technology,8(19).
    Atkin, B. (1993). Intelligent buildings. applications of IT and building automation to high technology construction project: Ashgate Publishing Company.
    Augusto, J. C., & Nugent, C. D. (2004, August). The use of temporal reasoning and management of complex events in smart homes. In Proceedings of the 16th European Conference on Artificial Intelligence, 778-782. IOS Press.
    Badica, C., Brezovan, M., & Badica, A. (2013). An Overview of Smart Home Environments:Architectures, Technologies and Applications. Paper presented at the BCI (Local),78.
    Banafa, A. (2017). IoT and Blockchain Convergence: Benefits and Challenges. IEEE. Retrieved from https://IoT.iece.org/newsletter/january-2017/IoT-and- blockchain-convergence-benefits-and-challenges.html
    Baudier, P., Ammi, C., & Deboeuf-Rouchon, M. (2018). Smart home: Highly-educated students' acceptance. Technological Forecasting and Social Change, 153(7), Article 119355.
    Baiyere, Abayomi, (2018). Fostering innovation ecosystems - Note on the 2017 ISPIM innovation forum. Technovation,69(1). https://doi.org/10.1016/ j.-technovation.2017.11.003.
    Bello, O., & Zeadally, S. (2019). Toward efficient smartification of the Internet of Things (IoT) services. Future Generation Computer Systems. doi: https://doi.org/10.101future6/j.2017.09.083
    Brown, R. (1992). Managing the “S” curves of innovation. Journal of Business & Industrial Marketing.
    Blackburn, D., Miles, C., & Wing, B. (2009). Biometrics" Foundation Documents". National Science and Technology Council Washington DC Subcommittee on Biometrics.
    Breschi, S., & Malerba, F. (1997). Sectoral innovation systems: technological regimes, Schumpeterian dynamics, and spatial boundaries. In: Edquist, Charles (Ed.), Systems of Innovation: Technologies, Institutions and Organizations. Routledge, 130-156.
    Carayannis, E. G., & Campbell, D. F. J. (2009). ‘mode 3’ and ‘quadruple helix’: toward a 21st century fractal innovation ecosystem. International journal of technology management, 46(3-4), 201-234.
    CE Pro (2019). Smart Home. Retrieved from: https://www.cepro.com/smart home.
    Chua, S. L., & Foo, L. K. (2015). Sensor Selection in Smart Homes. Procedia Computer Science, 69, 116-124.
    Chan, M., Estève, D., Escriba, C., & Campo, E. (2008). A review of smart homes Present state and future challenges. Computer Methods and Programs in Biomedicine, 91(1), 55-81.
    Chen, H., & Kocaoglu, D. F. (2008). A sensitivity analysis algorithm for hierarchical decision models. European Journal of Operational Research, 185(1), 266-288.
    Chifor, B. C., Bica, I., Patriciu, V. V., & Pop, F. (2018). A security authorization scheme for smart home Internet of Things devices. Future Generation Computer Systems, 86, 740-749.
    Chandler, A. D. (1962). Strategy and Structure. Cambridge. Boston Massachusetts City: Harvard University Press.
    Clark, J., & Guy, K. (1998). Innovation and competitiveness: a review: Practitioners' forum. Technology Analysis & Strategic Management, 10(3), 363-395.
    Curumsing, M. K., Fernando, N., Abdelrazek, M., Vasa, R., Mouzakis, K., & Grundy, J. (2019). Emotion-oriented requirements engineering: A case study in developing a smart home system for the elderly. Journal of Systems and Software, 147, 215-229.
    de Vasconcelos Gomes, L. A., Facin, A. L. F., Salerno, M. S., & Ikenami, R. K. (2018). Unpacking the innovation ecosystem construct: Evolution, gaps and trends. Technological Forecasting & Social Change, 136, 30-48.
    Daidj, N., & Jung, J. (2011). Strategies in the media industry: Towards the development of co-opetition practices? Journal of Media Business Studies, 8(4), 37-57.
    DIGITIMES(2013)。行動醫療照護需求殷切 ICT扮演最佳推手。取自https://www.digitimes.com.tw/iot/article.asp?cat=130&cat1=20&cat2=50&id=0000352641_bv550yh55rs8i80zvw60g
    Drucker, P. F. (1985). The practice of innovation. Innovation and Entrepreneurship Practice and Principles, Harper & Row, New York, 19-33.
    Dundar, K. (1976). HDM Software Users Guide. Retrieved from http://research1.etm.pdx.edu/HDM2/Default.aspx?error=Timeout
    Freeman, C. (1987). Technology Policy and Economic Performance: Lessons from Japan. Frances Pinter, London.
    Freeman, C. (1995). The ‘National System of Innovation’in historical perspective. Cambridge Journal of economics, 19(1), 5-24.
    Gawer, A., & Cusumano, M. A. (2008). Platform leaders. MIT Sloan Management Review; MIT Sloan School of Management: Boston, MA, USA, 68-75.
    Garnsey, E., Lorenzoni, G., & Ferriani, S. (2008). Speciation through entrepreneurial spin-off: The Acorn-ARM story. Research Policy, 37(2), 210-224.
    Gartner Research (2014). The Future Smart Home: 500 Smart Objects Will Enable New Business Opportunities. Retrieved from https://www.gartner.com/en/documents/2793317/the-future-smart-home-500-smart-objects-will-enable-new
    Gartner Research (2014). 80% of U.S. TV Households Have at Least one Connected TV Device. Retrieved from https://www.leichtmanresearch.com/80-of-u-s-tv-households-have-at-least-one-connected-tv-device/
    Gawer, A., Cusumano, M.A. (2014). Industry platforms and ecosystem innovation. Journal of product innovation management, 31(3), 417-433.
    Galinina, O., Mikhaylov, K., Andreev, S., Turlikov, A., & Koucheryavy, Y. (2015). Smart home gateway system over Bluetooth low energy with wireless energy transfer capability. EURASIP Journal on Wireless Communications and Networking, 2015(1), 178.
    Gerdsri, P., & Kocaoglu, D. F. (2008, July). HDM for developing national emerging technology strategy and policy supporting sustainable economy: A case study of nanotechnology for Thailand’s agriculture. PICMET'08-2008 Portland International Conference on Management of Engineering & Technology, 344-350. IEEE.
    Gilbert, J. T. (1994). Choosing an Innovation Strategy: Theory and Practice. Business Horizons, 37(6), 16-22.
    Gomes, Augusto, de, Vasconcelos, Leonardo, Lucia, F. F., Ana, Sergio, S., Mario, Ikenami, & Rodrigo, K. (2018). Unpacking the innovation ecosystem construct: evolution, gaps and trends. Technol. Forecast. Soc. Chang. 136, 30-48. https://doi.org/10.1016/ j.techfore. 2016.11.009.
    Granstrand, O., & Holgersson, M. (2020). Innovation ecosystems: A conceptual review and a new. Technovation,90-91,102098.
    Gubbi, J., Buyya, R., Marusic, S., & Palaniswami, M. (2013). Insternet of Things (IoT): A vision, architectural elements, and future directions. Future Generation Computer System, 29(7), 1645-1660.
    Habbershon, T. G. (2006). Commentary: A framework for managing the familiness and agency advantages in family firms. Entrepreneurship theory and practice, 30(6), 879-886.
    Hui, T. K., Sherratt, R. S., & Sánchez, D. D. (2017). Major requirements for building Smart Homes in Smart Cities based on Internet of Things technologies. Future Generation Computer Systems, 76, 358-369.
    Iansiti, M., Levien, R. (2004a). Strategy as ecology. Harv. Bus. Rev. 82 (3) (68).
    Iansiti, M., Levien, R. (2004b). The Keystone Advantage: What the New Dynamics of Business Ecosystems Mean for Strategy, Innovation, and Sustainability. Harvard Business School Press, Boston, Massachusetts.
    International Biometrics Group (2006). Comparative biometric testing round6 - public report. Retrieved from http://www.biometricgroup.com/reports/public/reports/CBT6 report.htm.
    Iskin, I. (2014). A dissertation submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy in Technology Management. Portland State University, Portland, OR, USA.
    ITU (2005). ITU Internet Report 2005: The Internet of Things. Geneva, Switzerland: International Telecommunication Union.
    Juniper Research (2016). Internet of Things’ Connected Devices to Triple By 2021, Reaching Over 46 Billion Units. Retrieved from https://www.juniperresearch.com/press/pressreleases/%E2%80%98internet-of-things%E2%80%99-connected-devices-triple-2021
    Juniper Research (2016). Smart Home Automation & Monitoring to Exceed 770m by 2021. Retrieved from https://www.juniperresearch.com/press/press-releases/smart-home-automation-monitoring-devices
    Juniper Research (2019). Digital Voice Assistants in Use to Triple to 8 Billion by 2023, Driven by Smart Home Devices. Retrieved from https://www.businesswire.com/news/home/20190212005064/en/Juniper-Research-Digital-Voice-Assistants-Triple-8
    Klobas, J. E., McGill, T., & Wang, X. (2019). How perceived security risk affects intention to use smart home devices: A reasoned action explanation. Computers & Security, 87, 751-763.
    Kocaoglu, D. F. (1976). A systems approach to the resource allocation process in police patrol (Doctoral dissertation, University of Pittsburgh).
    Kocaoglu, D. F. (1983). A participative approach to program evaluation. IEEE Transactions on Engineering Management, (3), 112-118.
    Kumar, N. M., & Mallick, P. K. (2018). The Internet of Things: Insights into the building blocks, component interactions, and architecture layers. Procedia Computer Science, 132, 109-117.
    Lavoie, J. R., & Daim, T. (2020). Towards the assessment of technology transfer capabilities: An action research-enhanced HDM model. Technology in Society,60,101217.
    Lee, B., Kwon, O., Lee, I., & Kim, J. (2017). Companionship with smart home devices: The impact of social connectedness and interaction types on perceived social support and companionship in smart homes. Computers in Human Behavior, 75, 922-934.
    Leichtman Research Group (2019). Over Half of Adults Report Watching More TV Since the Pandemic. Retrieved from https://www.leichtmanresearch.com/over-half-of-adults-report-watching-more-tv-since-the-pandemic/
    Liyanage, C. (2012). De Silva, Chamin Morikawa, Iskandar M. Petra, State of the art of smart homes. Engineering Applications of Artificial Intelligence, 25(7), 1313-1321.
    Lexlnnova (2015). Internet of Things: Patent Landscape Analysis. Retrieved from http://www.wipo.int/edocs/plrdocs/en/internet of things.pdf
    Li, Y., Orgerie, A. C., Rodero, I., Amersho, B. L., Parashar, M., & Menaud, J.-M. (2018). End-to-end energy models for Edge Cloud-based IoT platforms: Application to data stream analysis in IoT. Future Generation Computer Systems, 87, 667-678. doi: https://doi.org/10.1016/j.future.2017.12.048
    Li, L., & Harbin. (2011, March). Application of the internet of things in green agricultural products supply chain management. 2011 Fourth International Conference on Intelligent Computation Technology and Automation,1, 1022-1025. IEEE.
    Lobaccaro, G., Carlucci, S., & Löfström, E. (2016). A Review of Systems and Technologies for Smart Homes and Smart Grids. Energies, 9(5), 348.
    Lutolf, R. (1992, November). Smart home concept and the integration of energy meters into a home based system. Paper presented at the Metering Apparatus and Tariffs for Electricity Supply, Seventh International Conference on metering apparatus and tariffs for electricity supply, 1992, 277-278. IET.
    Lundvall, B. A. (1992). National Innovation Systems: Towards a Theory of Innovation and Interactive Learning. Pinter, London.
    Lyu, Y., Yan, F., Chen, Y., Wang, D., Shi, Y., & Agoulmine, N. (2015). High- performance scheduling model for multisensor gateway of cloud sensor system-based smart-living. Information Fusion, 21, 42-56. doi: https://doi.org/10.1016/j.inffus.2013.04.004
    Marikyan, D., Papagiannidis, S., & Alamanos, E. (2019). A systematic review of the smart home literature: A user perspective. Technological Forecasting and Social Change,138,139-154.
    McKinsey Global Institute analysis (2015). The Internet of Things: Mapping the Value Beyond the Hype. Retrieved from https://www.mckinsey.com/~/media/McKinsey/Industries/Technology%20Media%20and%20Telecommunications/High%20Tech/Our%20Insights/The%20Internet%20of%20Things%20The%20value%20of%20digitizing%20the%20physical%20world/Unlocking_the_potential_of_the_Internet_of_Things_Executive_summary.ashx
    Miorandi, D., Sicari, S., De Pellegrini, F., & Chlamtac, I. (2012). Internet of things: Vision, applications and research challenges. Ad Hoc Networks, 10(7), 1497-1516.
    Mintzberg, H. (1979). The Structuring of Organization. New Jersey: Prentice Hall.
    Ming, T., Kaoru, O., & Mianxiong, D. (2018). Multi-layer cloud architectural model and ontology-based security service framework for IoT-based smart homes. Future Generation Computer Systems,78(3),1040-1051.
    Moore, J.F. (1993). Predators and prey: a new ecology of competition. Harvard business review, 71(3), 75-86.
    Moore, J.F.(1996). The Death of Competition: Leadership and Strategy in the Age of Business Ecosystems. Harper Collins, New York.
    Moore, J. F. (2006). Business ecosystems and the view from the firm. Antitrust Bulletin, 51(1), 31-75.
    Mocrii, D., Chen, Y., & Musilek, P. (2018). IoT-based smart homes: A review of system architecture, software, communications, privacy and security. Internet of Things, 1(2), 81-98.
    Munkongsujarit, S., Schweinfort, W., Iskin, I., Colon, R., Tanatammatorn, N., Phopoonsak, N., & Almobarak, A. (2009, August). Decision model for a place to live at PSU: The case of international graduate students. PICMET'09-2009 Portland International Conference on Management of Engineering & Technology, 513-534. IEEE.
    Nambisan, S., & Baron, R.A. (2013). Entrepreneurship in innovation ecosystems: Entrepreneurs' self-regulatory processes and their implications for new venture success. Enterp. Theory Pract. 37 (5), 1071-1097.
    Oh, D.-S., Phillips, F., Park, S., & Lee, E. (2016). Innovation ecosystems: a critical examination. Tec novation 54, 1-6.
    Orwat, C., Graefe, A., & Faulwasser, T. (2008). Towards pervasive computing in health care–A literature review. BMC medical informatics and decision making, 8(1), 26.
    Poter, M. E. (1998). Competitive Strategy. New York: Free Press.
    Pham, M., Mengistu, Y., Do, H., & Sheng, W. (2018). Delivering home healthcare through a Cloud-based Smart Home Environment (CoSHE). Future Generation Computer Systems, 81, 129-140.
    Ra, J. W. (1987). Analysis of the column-row approach for pairwise comparison. Unpublished dissertation, University of Pittsburgh.
    Ra, J. W. (1988). Analysis of expert judgments in hierarchical decision process. University of Pittsburgh.
    Ra, J. W. (1999). Chainwise paired comparisons. Decision Sciences, 30(2), 581-599.
    Ritala, P., & Almpanopoulou, A. (2017). In defense of ‘eco’in innovation ecosystem. Technovation, 60, 39-42.
    Rong, K. (2011). Nurturing Business Ecosystem from Firm Perspectives: Lifecycle, Nurturing Process, Constructs, Configuration Pattern. (Ph.D. thesis). University of Cambridge.
    Roger Evered (1981). So what is strategy. Long range planning. Monterey, CA: Naval Postgraduate School.
    Saaty, T. L. (1980). The Analytic Hierarchy Process: Planning, Priority Setting. Resource Allocation: McGraw-Hill. Inc. New York, NY.
    Sawhney, M., & Nambisan, S. (2007). The global brain: Your roadmap for innovating faster and smarter in a networked world. Pearson Prentice Hall.
    Sanguinetti, A., Karlin, B., & Ford, R. (2018). Understanding the path to smart home adoption: Segmenting and describing consumers across the innovation-decision process. Energy research & social science, 46, 274-283.
    Schumpeter, J. A. (1934). The Theory of Economic Development. 7th edn (transl. Opie R) Harvard University Press: Cambridge.
    Schon, D. A. (1967). Technology and Change. Pergamum Press. K. Holt.
    Sheikh, N. J., Park, Y. J., & Kocaoglu, D. F. (2014, July). Assessment of solar photovoltaic technologies using multiple perspectives and hierarchical decision modeling: Manufacturers worldview. Proceedings of PICMET'14 Conference: Portland International Center for Management of Engineering and Technology; Infrastructure and Service Integration, 491-497. IEEE.
    Shuhaiber, A., & Mashal, I. (2019). Understanding users’ acceptance of smart homes. Technology in Society, 58, 101110.
    Stojkoska, B. L. R., & Trivodaliev, K. V. (2017). A review of Internet of Things for smart home: Challenges andsolutions. Journal of Cleaner Production, 140(3), 1454-1464.
    Strategy Analytics (2017). Various Internet of Things devices around the world predict that smart homes will reach 50 billion units. Retrieved from https://www.strategyanalytics.com/strategy-analytics/news/strategy-analytics-press-releases/strategy-analytics-press-release/2017/10/26/smart-home-will-drive-internet-of-things-to-50-billion-devices-says-strategy-analytics#.WfKej1WWaUk
    Strategy Analytics (2017). Taiwan Internet of Things Megatrends: Current Situation and Future. Retrieved from http://www.tuvrblog.com/zh-tw/2739.html
    Strategy Analytics (2019). Analysis of the global smart home market in 2019 will exceed 100 billion US dollars. Retrieved from https://news.strategyanalytics.com/press-release/intelligent-home/strategy-analytics-global-smart-home-market-surpass-100-billion-2019
    Taha, R. A., Choi, B. C., Chuengparsitporn, P., Cutar, A., Gu, Q., & Phan, K. (2007, August). Application of hierarchical decision modeling for selection of laptop. PICMET'07-2007 Portland International Conference on Management of Engineering & Technology, 1160-1175. IEEE.
    Tao, M., Ota, K., & Dong, M. (2017). Ontology based data semantic management and application in IoT- and cloud-enabled smart homes. Future Generation Computer Systems, 76, 528-539.
    Wang, J. S., & Peng, C. C. (2018). Exploration of the Adoption of Biometrics Applied in Consumer Electronics Based on the Engineer Perspectives. Journal of Science and Technology Management,23(1), 65-95.
    Weick, K. E. (1979). The Social Psychology of Organizing: McGraww-Hill. Inc. Jönköping International Business School, New York, NY.
    Wilson, C., Hargreaves, T., & Hauxwell-Baldwin, R. (2017). Benefits and risks of smart home technologies. Energy Policy, 103, 72-83.
    Yang, S. H., Nam, C., & Kim, S. (2018). The effects of M&As within the mobile ecosystem on the rival's shareholder value: The case of Google and Apple. Telecommunications Policy,42(1), 15-23.
    Zahra, S.A., & Nambisan, S. (2012). Entrepreneurship and strategic thinking in business ecosystems Bus. Horiz. 55 (3), 219-229.
    Zhang, D., Yang, Z., Yu, S., Mi, Q., & Pan, Q. (2020). Diversiform metal oxide-based hybrid nanostructures for gas sensing with versatile prospects. Coordination Chemistry Reviews, 413, 213272.

    無法下載圖示 電子全文延後公開
    2025/08/16
    QR CODE