Integrated blockchain and internet of things in the food supply chain: Adoption barriers
暂无分享,去创建一个
[1] J. Paik,et al. What's driving the diffusion of next-generation digital technologies? , 2022, Technovation.
[2] Luciano Ferreira da Silva,et al. Challenges in the implementation of internet of things projects and actions to overcome them , 2021, Technovation.
[3] Tugrul U. Daim,et al. Technology convergence assessment: Case of blockchain within the IR 4.0 platform , 2021 .
[4] M. Nilashi,et al. Effect of internet of things on manufacturing performance: A hybrid multi-criteria decision-making and neuro-fuzzy approach , 2021, Technovation.
[5] Angel Contreras Cruz,et al. Exploring post-adoption behaviors of e-service users: Evidence from the hospitality sector /online travel services , 2021, Technology in Society.
[6] Kushankur Dey,et al. Blockchain for sustainable e-agriculture: Literature review, architecture for data management, and implications , 2021 .
[7] Hansa Lysander Manohar,et al. Factors influencing the acceptance of private and public blockchain-based collaboration among supply chain practitioners: a parallel mediation model , 2021, Supply Chain Management: An International Journal.
[8] T. Daim,et al. Technology assessment: Enabling Blockchain in hospitality and tourism sectors , 2021, Technological Forecasting and Social Change.
[9] Tugrul Daim,et al. Integrating patent analysis into technology roadmapping: A latent dirichlet allocation based technology assessment and roadmapping in the field of Blockchain , 2021 .
[10] Rakesh D. Raut,et al. To identify industry 4.0 and circular economy adoption barriers in the agriculture supply chain by using ISM-ANP , 2021 .
[11] Koteshwar Chirumalla. Building digitally-enabled process innovation in the process industries: A dynamic capabilities approach , 2021, Technovation.
[12] Cheng Gong,et al. Developing a unified definition of digital transformation , 2021, Technovation.
[13] Wen-Lung Shiau,et al. Exploring the intellectual cores of the blockchain-Internet of Things (BIoT) , 2021, J. Enterp. Inf. Manag..
[14] Tugrul U. Daim,et al. Mining research and invention activity for innovation trends: case of blockchain technology , 2021, Scientometrics.
[15] Nastaran Hajiheydari,et al. Discovering IoT implications in business and management: A computational thematic analysis , 2021 .
[16] Nguyen Khoi Tran,et al. Integrating blockchain and Internet of Things systems: A systematic review on objectives and designs , 2021, J. Netw. Comput. Appl..
[17] J. Sarkis,et al. Blockchain technology and the sustainable supply chain: Theoretically exploring adoption barriers , 2021, International Journal of Production Economics.
[18] Luigi Coppolino,et al. Fuzzy set theory-based comparative evaluation of cloud service offerings: an agro-food supply chain case study , 2020, Technol. Anal. Strateg. Manag..
[19] Jianqiang Li,et al. Blockchain for Internet of things applications: A review and open issues , 2020, J. Netw. Comput. Appl..
[20] Saurabh Singh,et al. Convergence of blockchain and artificial intelligence in IoT network for the sustainable smart city , 2020, Sustainable Cities and Society.
[21] Tugrul U. Daim,et al. Forecasting technological positioning through technology knowledge redundancy: Patent citation analysis of IoT, cybersecurity, and Blockchain , 2020 .
[22] Erkan Bostanci,et al. An Effective Yield Estimation System Based on Blockchain Technology , 2020, IEEE Transactions on Engineering Management.
[23] Thar Baker,et al. Blockchain-based privacy-preserving remote data integrity checking scheme for IoT information systems , 2020, Inf. Process. Manag..
[24] Michael Mylrea,et al. Evaluation and Demonstration of Blockchain Applicability Framework , 2020, IEEE Transactions on Engineering Management.
[25] Rakesh D. Raut,et al. Blockchain technology adoption barriers in the Indian agricultural supply chain: an integrated approach , 2020 .
[26] Md. Abdul Moktadir,et al. A case study on strategies to deal with the impacts of COVID-19 pandemic in the food and beverage industry , 2020, Operations Management Research.
[27] Tugrul U. Daim,et al. The use of readiness assessment for big data projects , 2020 .
[28] Diego Vazquez-Brust,et al. Evaluating the factors that influence blockchain adoption in the freight logistics industry , 2020, Transportation Research Part E: Logistics and Transportation Review.
[29] B. Yan,et al. Supply chain coordination of fresh Agri-products based on value loss , 2020, Operations Management Research.
[30] G. Guido,et al. Internet of Things and Big Data as enablers for business digitalization strategies , 2020, Technovation.
[31] Md. Abdul Moktadir,et al. Critical success factors for a circular economy: Implications for business strategy and the environment , 2020, Business Strategy and the Environment.
[32] Vipul Jain,et al. Fuzzy DEMATEL analysis of barriers to Blockchain-based life cycle assessment in China , 2020, Comput. Ind. Eng..
[33] Zhi-Ping Fan,et al. Considering the traceability awareness of consumers: should the supply chain adopt the blockchain technology? , 2020, Annals of Operations Research.
[34] Evi Hartmann,et al. Blockchain Technology in Logistics and Supply Chain Management—A Bibliometric Literature Review From 2016 to January 2020 , 2020, IEEE Transactions on Engineering Management.
[35] Mahak Sharma,et al. Quantifying SWOT analysis for cloud adoption using FAHP-DEMATEL approach: evidence from the manufacturing sector , 2020, J. Enterp. Inf. Manag..
[36] Jian Zhang,et al. Applying blockchain technology to improve agri-food traceability: A review of development methods, benefits and challenges , 2020, Journal of Cleaner Production.
[37] H. Shee,et al. Iot in supply chain management: a narrative on retail sector sustainability , 2020, International Journal of Logistics Research and Applications.
[38] Lulwah AlSuwaidan,et al. Validating the Adoption of Heterogeneous Internet of Things with Blockchain , 2020, Future Internet.
[39] João S. Resende,et al. The case for blockchain in IoT identity management , 2020, J. Enterp. Inf. Manag..
[40] Viswanath Venkatesh,et al. Blockchain, adoption, and financial inclusion in India: Research opportunities , 2020, Int. J. Inf. Manag..
[41] Marijn Janssen,et al. Boundary conditions for traceability in food supply chains using blockchain technology , 2020, Int. J. Inf. Manag..
[42] Massimo Pizzol,et al. Technology assessment of blockchain-based technologies in the food supply chain , 2020 .
[43] Nils Urbach,et al. Toward Trust in Internet of Things Ecosystems: Design Principles for Blockchain-Based IoT Applications , 2020, IEEE Transactions on Engineering Management.
[44] Janusz Kacprzyk,et al. Agri-food 4.0: A survey of the supply chains and technologies for the future agriculture , 2020, Comput. Ind..
[45] Mahak Sharma,et al. A hybrid multi-criteria decision-making method for cloud adoption: Evidence from the healthcare sector , 2020, Technology in Society.
[46] Tsan-Ming Choi,et al. Supply chain financing using blockchain: impacts on supply chains selling fashionable products , 2020, Annals of Operations Research.
[47] Henrik S. Sternberg,et al. The Struggle is Real: Insights from a Supply Chain Blockchain Case , 2020, Journal of Business Logistics.
[48] Mohammad Raihanul Hasan,et al. Operational efficiency effects of blockchain technology implementation in firms , 2020 .
[49] Markus Bick,et al. Blockchain Applications in Supply Chain Transactions , 2020, Journal of Business Logistics.
[50] Jiyue Huang,et al. Groupchain: Towards a Scalable Public Blockchain in Fog Computing of IoT Services Computing , 2020, IEEE Transactions on Services Computing.
[51] Rajasshrie Pillai,et al. Adoption of internet of things (IoT) in the agriculture industry deploying the BRT framework , 2020 .
[52] Fabio Sgarbossa,et al. Increasing flexibility and productivity in Industry 4.0 production networks with autonomous mobile robots and smart intralogistics , 2020, Annals of Operations Research.
[53] Alexander Benlian,et al. Blockchain and the Industrial Internet of Things: A requirement taxonomy and systematic fit analysis , 2020, J. Enterp. Inf. Manag..
[54] Yung Po Tsang,et al. Blockchain-Driven IoT for Food Traceability With an Integrated Consensus Mechanism , 2019, IEEE Access.
[55] Evan D. G. Fraser,et al. Transparency in food supply chains: A review of enabling technology solutions , 2019, Trends in Food Science & Technology.
[56] Wattana Viriyasitavat,et al. When blockchain meets Internet of Things: Characteristics, challenges, and business opportunities , 2019, J. Ind. Inf. Integr..
[57] Golam Kabir,et al. Framework for evaluating risks in food supply chain: Implications in food wastage reduction , 2019, Journal of Cleaner Production.
[58] Andreas Kamilaris,et al. The Rise of Blockchain Technology in Agriculture and Food Supply Chains , 2019, Trends in Food Science & Technology.
[59] H. Kaur. Modelling internet of things driven sustainable food security system , 2019, Benchmarking: An International Journal.
[60] J. Aitken,et al. Blockchain technology: implications for operations and supply chain management , 2019, Supply Chain Management: An International Journal.
[61] Hanshu Hong,et al. Toward secure and accountable data transmission in Narrow Band Internet of Things based on blockchain , 2019, Int. J. Distributed Sens. Networks.
[62] S. Bonilla,et al. Blockchain and supply chain management integration: a systematic review of the literature , 2019, Supply Chain Management: An International Journal.
[63] Wei Ni,et al. Survey on blockchain for Internet of Things , 2019, Comput. Commun..
[64] P. Beynon-Davies,et al. Understanding blockchain technology for future supply chains: a systematic literature review and research agenda , 2019, Supply Chain Management: An International Journal.
[65] Wei Ni,et al. Blockchain's adoption in IoT: The challenges, and a way forward , 2019, J. Netw. Comput. Appl..
[66] Felipe Caro,et al. The Internet of Things (IoT) in retail: Bridging supply and demand , 2019, Business Horizons.
[67] Ville Uusitalo,et al. A framework of disruptive sustainable innovation: an example of the Finnish food system , 2018, Technol. Anal. Strateg. Manag..
[68] Angappa Gunasekaran,et al. Big Data and supply chain management: a review and bibliometric analysis , 2018, Ann. Oper. Res..
[69] João Luiz Kovaleski,et al. Technology transfer in the supply chain oriented to industry 4.0: a literature review , 2018, Technol. Anal. Strateg. Manag..
[70] Saniya Zahoor,et al. Resource management in pervasive Internet of Things: A survey , 2018, J. King Saud Univ. Comput. Inf. Sci..
[71] Ruhollah Tavallaei,et al. Factors Influencing Acceptance of E-health: an Interpretive Structural Modeling , 2018 .
[72] Antonio Messeni Petruzzelli,et al. Towards Industry 4.0 , 2018, Bus. Process. Manag. J..
[73] Shah Jahan Miah,et al. The effect of "Internet of Things" on supply chain integration and performance: An organisational capability perspective , 2018, Australas. J. Inf. Syst..
[74] S. Ali,et al. Modeling the interrelationships among barriers to sustainable supply chain management in leather industry , 2018 .
[75] T. Daim,et al. A Research and Development Decision Model for Pharmaceutical Industry: Case of China , 2018 .
[76] Mengru Tu. An exploratory study of Internet of Things (IoT) adoption intention in logistics and supply chain management - a mixed research approach , 2018 .
[77] Hajar Fatorachian,et al. A critical investigation of Industry 4.0 in manufacturing: theoretical operationalisation framework , 2018 .
[78] Thyagaraj S. Kuthambalayan,et al. Analysis of challenges inhibiting the reduction of waste in food supply chain , 2017 .
[79] Zahir Irani,et al. Managing food security through food waste and loss: Small data to big data , 2017, Comput. Oper. Res..
[80] Anshuman Khare,et al. Examining potential benefits and challenges associated with the Internet of Things integration in supply chains , 2017 .
[81] Tugrul U. Daim,et al. Exploring technology acceptance for online food services , 2013, Int. J. Bus. Inf. Syst..
[82] A. Iera,et al. The Internet of Things: A survey , 2010, Comput. Networks.
[83] Elias G. Carayannis,et al. Technology Transfer Evaluation: Driving Organizational Changes Through a Hierarchical Scoring Model , 2021, IEEE Transactions on Engineering Management.
[84] T. Daim,et al. Assessment of the Blockchain Technology Adoption for the Management of the Electronic Health Record Systems , 2021, IEEE Transactions on Engineering Management.
[85] T. Daim,et al. Exploring the Factors Influencing Big Data Technology Acceptance , 2021, IEEE Transactions on Engineering Management.
[86] P. Musílek,et al. A Comprehensive Review of Blockchain Consensus Mechanisms , 2021, IEEE Access.
[87] Naoufel Cheikhrouhou,et al. A Framework Integrating Internet of Things and Blockchain in Clinical Trials Reverse Supply Chain , 2021, APMS.
[88] Rakesh D. Raut,et al. Improvement in the food losses in fruits and vegetable supply chain - a perspective of cold third-party logistics approach , 2019, Operations Research Perspectives.
[89] E. Soler,et al. Future Generation Computer Systems , 2018 .
[90] John N. Warfield,et al. Developing Subsystem Matrices in Structural Modeling , 1974, IEEE Trans. Syst. Man Cybern..