請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/73161完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 蔣明晃(David Ming-Huang Chiang) | |
| dc.contributor.author | Meng-Lin Wu | en |
| dc.contributor.author | 吳孟霖 | zh_TW |
| dc.date.accessioned | 2021-06-17T07:20:16Z | - |
| dc.date.available | 2019-07-17 | |
| dc.date.copyright | 2019-07-17 | |
| dc.date.issued | 2019 | |
| dc.date.submitted | 2019-07-08 | |
| dc.identifier.citation | 中文文獻
1.許輔、林弘仁 (2010),歐盟食品追溯TraceCore XML與我國產銷履歷TAFT-XML資料交換格式之比較,農委會資訊中心。 英文文獻 1.Aaker, D.A. (1984). Developing business strategies. John Willey and Sons. 2.Benbasat, I., Goldstein, D.K., Mead, M. (1987) The case research strategy in studies of information systems. MIS Quarterly, 11:3, 369-386. 3.Bendaoud, M., Lecomte, C., Yannou, B. (2007). Traceability systems in the agri-food sector: A functional analysis. 16th International Conference on Engineering Design, Paris. 4.Castro, M. and Liskov, B. (1999). Practical byzantine fault tolerance. 3rd Symp. on Operating Systems Design and implementation table of contents. New Orleans, Louisiana, USA, 173-186. 5.Daniel, R. (1961). Management information crisis. Harvard Business Review, 39(5), 111-121. 6.Kamath, R. (2018). Food traceability on blockchain: Walmart’s pork and mango pilots with IBM. The Journal of The British Blockchain Association 1(1), 1-12. 7.Lawrence, P., Lorsch J. (1967). Differentiation and integration in complex organizations. Administrative Science Quarterly, 12, 1-47. 8.Low, C., Chen, Y. (2011). Understanding the determinants of cloud computing adoption. Industrial Management and Data Systems, Vol.111, No.7, 1006-1023. 9.Moore, G.C., Benbasat, I. (1991). Development of an instrument to measure the perceptions of adopting an information technology innovation. Information Systems Research, 2(3), 192−222. 10.Rockart, J.F. (1979). Chief executives define their own data needs. Harvard Business Review, 57(2), 81−93. 11.Rogers, E.M. (1995). Diffusion of innovations, 4th edition. the Free Press, New York. 12.Scholten, H., Verdouw, C.N., Beulens, A.J.M., Vorst, van der Vorst, J.G.A.J. (2016) Defining and analyzing traceability advances In: Espiñeira, M., Santaclarain, F.J., (Ed.) Food Traceability Techniques and Technologies, first ed. Woodhead Publishing, 9 - 33. 13.Schwägele, F. (2005). Traceability from a European perspective. Meat Science, 71(1), 164-173. 14.Theuvsen, L. (2004). Transparency in netchains as an organizational phenomenon: exploring the role of interdependencies. Journal on Chain and Network Science, 4(2), 125 – 138. 15.Theuvsen, L., Frentrup, M. (2006). Transparency in supply chains: Is trust a limiting factor? In: M. Fritz, U. Rickert and G. Schiefer (Eds.), Trust and risk in business networks, Bonn: ILB-Press, 65-74. 16.Trienekens, J.H, Vorst, J.V.D., Verdouw, C. (2014). Global food supply chains. In: van Alfen, N.K. (Ed.), Encyclopedia of Agriculture and Food Systems, second ed. Academic Press, 499–517. 17.Trienekens, J.H., Wognum, P.M., Beulens, A.J.M., van der Vorst, J.G.A.J. (2012). Transparency in complex dynamic food supply chains. Advanced Engineering Informatics, 26 (1), 55–65. 18.Yin, R. (1994). Case study research: Design and methods (2nd ed.). Beverly Hills, CA: Sage Publishing. 19.Zheng, Z., Xie, S., Dai, H., Chen, X., Wang, H.(2017) An overview of blockchain technology: architecture, consensus, and future trends. 2017 IEEE 6th International. Congress on Big Data, 557-564. 網路文獻 1.Chen, R. (民國107),基礎密碼學(對稱式與非對稱式加密技術),民國 108年5月29日,取自:https://medium.com/@RiverChan/%E5%9F%BA%E7%A4%8E%E5%AF%86%E7%A2%BC%E5%AD%B8-%E5%B0%8D%E7%A8%B1%E5%BC%8F%E8%88%87%E9%9D%9E%E5%B0%8D%E7%A8%B1%E5%BC%8F%E5%8A%A0%E5%AF%86%E6%8A%80%E8%A1%93-de25fd5fa537。 2.Hoi, S. (民國107年),區塊鏈 Blockchain – IPFS 分散式檔案系統,民國 108年5月29日,取自:https://www.samsonhoi.com/689/blockchain-ipfs-intro 3.中本聰 (2008). Bitcoin: a peer-to-peer electronic cash system. Retrieved May 25, 2019, from http://bitcoin.org/bitcoin.pdf 4.Aon. (2018). 2018 Emerging trends in product recall and contamination risk management. Retrieved May 24, 2019, from https://www.aon.com/forms/2018/2018-emerging-trends-product-recall.jsp 5.Buterin, V. (2013). A next generation smart contract and decentralized application platform. Retrieved from https://github.com/ethereum/wiki/wiki/White-Paper 6.Buterin, V. (2015). On public and private blockchains. Retrieved May 24, 2019, from https://medium.com/@bitnewstoday/vitalik-buterin-save-private-ethereum-bbcf707ef1ed 7.ByteAlly. (2019). Guide:Integrating with IBM Food Trust™ blockchain. Retrieved June 13, 2019, from https://byteally.com/insights/supply-chain/integrating-with-ibm-food-trust-blockchain-guide/ 8.Deloitte. (2017). Evolution of blockchain technology. Retrieved June 13, 2019, from https://www2.deloitte.com/insights/us/en/industry/financial-services/evolution-of-blockchain-github-platform.html#interactive1 9.Disruptor Daily. (2018). Blockchain in supply chain management: 13 possible use cases. Retrieved June 13, 2019, from https://www.disruptordaily.com/blockchain-use-cases-supply-chain-management/ 10.Food Safety. (2012). Recall: The food industry's biggest threat to profitability. Retrieved June 13, 2019, from https://www.foodsafetymagazine.com/signature-series/recall-the-food-industrys-biggest-threat-to-profitability/ 11.Forbes. (2017). IBM forges blockchain collaboration with Nestlé & Walmart in global food safety. Retrieved May 29, 2019, from https://www.forbes.com/sites/rogeraitken/2017/08/22/ibm-forges-blockchain-collaboration-with-nestle-walmart-for-global-food-safety/#5409276f3d36 12.Ipsos Business Consulting. (2016), Vietnam meat market. Retrieved May 29, 2019, from https://www.ipsos.com/sites/default/files/2016-08/meat-market-in-vietnam.pdf 13.Keyence. (n.d.) What is traceability? Retrieved April 23, 2019, from https://www.keyence.com/ss/products/marking/traceability/basic_about.jsp 14.Navigos Group. (2018). Vietnamese tech personnel in the face of artificial intelligence and blockchain. Retrieved June 8, 2019, from https://drive.google.com/file/d/1xAPnWzgLByKHSPc0zblehvXGnRnc54Yd/view 15.NIST. (2001). FIPS 140-2. Federal Information Processing Standards Publication. Retrieved May 17, 2019, from https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.140-2.pdf 16.Steemit. (2018). TE-FOOD, the food chain sanitised by the blockchain. Retrieved June 8, 2019, from https://steemit.com/blockchain/@theicoracle/te-food-the-food-chain-sanitised-by-the-blockchain 17.Supplychain247. (2017). Major blockchain collaboration with wamart and others to address food safety worldwide. Retrieved May 29, 2019, from https://www.supplychain247.com/article/major_blockchain_collaboration_to_address_food_safety_worldwide 18.The International of Blockchain Foundation. (2018). 50+ Examples of how blockchains are taking over the world. Retrieved June 13, 2019, from https://medium.com/@matteozago/50-examples-of-how-blockchains-are-taking-over-the-world-4276bf488a4b 19.The New Stack. (2018) Walmart’s blockchain program may transform the way we use data. Retrieved May 29, 2019, from https://thenewstack.io/walmarts-blockchain-program-may-transform-the-way-we-use-data/ 20.Swiss Re. (2015). Food safety in a globalised world. Retrieved May 29, 2019, from https://www.swissre.com/dam/jcr:53d2ac5b-4497-4c63-957f-9e2827fc7788/Food_safety_in_a_globalised_world_final.pdf 21.TE-Food. (2017). Why does TE-FOOD focus on emerging countries?. Retrieved June 8, 2019, from https://medium.com/te-food/why-does-te-food-focuses-on-emerging-countries-aa9e3450c8fb 22.TE-Food. (2018). Introduction of TE-FOOD’s technology. Retrieved June 8, 2019, from https://medium.com/te-food/introduction-of-te-foods-technology-732cdd90bb16 23.TE-Food. (2018). TE-FOOD signs mult i-level cooperation agreement with the University of Debrecen and Laurel Group. Retrieved June 8, 2019, from https://medium.com/te-food/te-food-signs-multi-level-cooperation-agreement-with-the-university-of-debrecen-and-laurel-group-4ace1bf55899 24.TE-Food. (2019). The world's most reliable and cost-effective food tracking system. https://alpsolution.ch/wp-content/uploads/2019/01/TE_FOOD_INTRO_EN.pdf 25.TE-Food. (n.d.). White paper. https://ico.tefoodint.com/te-food-white-paper.pdf 26.TE-Food. (n.d.). Livestock and fresh produce traceability platform. https://dusseldorf.mfa.gov.hu/assets/53/37/59/5ddb97eef1b02d02ff39db7433c0ba643dea0f5a.pdf 27.Utimaco. (n.d.) FIPS 140-2. Retrieved May 29, 2019, from https://hsm.utimaco.com/solutions/compliance/certifications/fips-140-2/ 28.Wong, J.I. (n.d.). Walmart the world’s biggest retailer wants to bring blockchains to the food business. Retrieved May 25, 2019, from https://classic.qz.com/perfect-company-2/1146289/the-worlds-biggest-retailer-wants-to-bring-blockchains-to-the-food-business/ | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/73161 | - |
| dc.description.abstract | 近年區塊鏈技術逐漸興起,區塊鏈技術的發展進展由前期開發逐漸走向大規模商業應用,藉由區塊鏈本身的特性在多個場景和產業中提供適切的解決方案,例如:審計透明、交易結算、食品安全和資料追溯等。其中食品安全問題日趨嚴重,部分的原因源自食品產業的國際化程度增加,導致食品供應鏈透明化程度不足,以及在遠距管理上提升困難度。
本研究以創新擴散理論結合供應鏈透明化影響因素作為本研究之理論架構,並佐以個案分析法分析研究個案 “IBM Food Trust” 和 “TE-Food”,最後以交叉分析得到關鍵成功因素。 研究結果發現區塊鏈作為基底技術,其解決方案的技術理解程度較低,也由於其基底技術的特性,需要極高的系統相容性、成果展示性和可測試性以提高業者的採用意願,因此本研究認為「解決方案與既有系統的相容性」、「解決方案之成果展示性」和「解決方案之可測試性」為區塊鏈食品追溯系統導入的關鍵成功因素。 | zh_TW |
| dc.description.abstract | In recent years, blockchain technology has gradually evolved from the early development to the large-scale commercial application. The characteristics of blockchain technology have provided solutions in multiple scenarios and industries, for example, audit transparency, transaction settlement, food safety, and provenance. Among them, the food safety problem has become increasingly serious. Part of the reason is the internationalization of the food industry, resulting in insufficient transparency of the food supply chain and difficulties in remote management.
To find out the key success factors, we establish the theoretical framework by studying about blockchain technology and food traceability system. This research uses the diffusion of innovation theory combined with the influencing factors of supply chain transparency as the theoretical framework of this research and analyzes “IBM Food Trust” and “TE-Food” by case analysis method, and finally obtains the key success factors by cross-analysis. The result of this research shows that because blockchain technology is the infrastructure technology and difficult for the adopter to understand. Thus, blockchain solution requires extremely high system compatibility, result demonstrability, and trialability to improve the level of adoption in the industry. This research concludes that the degree of “compatibility of solutions with existing systems”, 'the result demonstrability of solution ' and 'trialability of solutions' are key success factors for the adoption of blockchain food traceability systems. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-17T07:20:16Z (GMT). No. of bitstreams: 1 ntu-108-R06741045-1.pdf: 4476943 bytes, checksum: 2063fe1a3b78bb7c5afb48e095e34ac8 (MD5) Previous issue date: 2019 | en |
| dc.description.tableofcontents | 摘要 i
Abstract ii 目錄 iii 圖目錄 vi 表目錄 vii 第一章 緒論 1 1.1 研究動機 1 1.2 研究目的 4 1.3 研究流程 4 第二章 文獻探討 6 2.1食品追溯系統 6 2.1.1 可追溯性的定義 6 2.1.2 食品供應鏈的特性 7 2.1.3 食品追溯系統的架構 8 2.2 區塊鏈的基本概念 11 2.2.1 區塊鏈的架構 11 2.2.2 區塊鏈的雜湊加密技術 12 2.2.3 共識演算法 13 2.2.4 區塊鏈的特性 15 2.2.5 區塊鏈的類型 16 2.2.6 區塊鏈的發展和限制 18 2.3 創新擴散理論 19 2.4 供應鏈透明化的影響因素 20 2.5 關鍵成功因素 22 2.5.1 關鍵成功因素的定義 22 2.5.2 資訊科技的關鍵成功因素 23 第三章 研究方法 25 3.1 理論架構 25 3.1.1 相對優勢 26 3.1.2 相容性 27 3.1.3 複雜性 28 3.1.4 可試用性 28 3.1.5 可觀察性 28 3.2 個案分析法 29 第四章 個案與分析結果 31 4.1 個案一:IBM Food Trust 31 4.2 個案二:TE-Food 40 4.3 交叉分析結果 51 第五章 結論與建議 54 5.1研究結論與管理意涵 54 5.2 研究限制 55 5.3 未來研究方向 55 參考文獻 57 | |
| dc.language.iso | zh-TW | |
| dc.subject | 供應鏈透明化 | zh_TW |
| dc.subject | 創新擴散模型 | zh_TW |
| dc.subject | 生產履歷 | zh_TW |
| dc.subject | 食品追溯系統 | zh_TW |
| dc.subject | 區塊鏈 | zh_TW |
| dc.subject | blockchain | en |
| dc.subject | food traceability system | en |
| dc.subject | diffusion of innovation | en |
| dc.subject | supply chain transparency | en |
| dc.title | 區塊鏈食品追溯系統導入之關鍵成功因素 | zh_TW |
| dc.title | Key success factors for the adoption of blockchain food traceability systems | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 107-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 李易諭(Yi-Yu Lee),羅明琇(Ming-Shiow Lo) | |
| dc.subject.keyword | 區塊鏈,食品追溯系統,生產履歷,創新擴散模型,供應鏈透明化, | zh_TW |
| dc.subject.keyword | blockchain,food traceability system,diffusion of innovation,supply chain transparency, | en |
| dc.relation.page | 61 | |
| dc.identifier.doi | 10.6342/NTU201901291 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2019-07-08 | |
| dc.contributor.author-college | 管理學院 | zh_TW |
| dc.contributor.author-dept | 商學研究所 | zh_TW |
| 顯示於系所單位: | 商學研究所 | |
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