Decision support system for blockchain (DLT) platform selection based on ITU recommendations: A systematic literature review approach
暂无分享,去创建一个
[1] Ajith Tom James,et al. Selection of bus chassis for large fleet operators in India: An AHP-TOPSIS approach , 2021, Expert Syst. Appl..
[2] Veysel Çoban,et al. Evaluation of the impact of blockchain technology on supply chain using cognitive maps , 2021, Expert Syst. Appl..
[3] Tugrul U. Daim,et al. Technology convergence assessment: Case of blockchain within the IR 4.0 platform , 2021 .
[4] T. Daim,et al. Technology assessment: Enabling Blockchain in hospitality and tourism sectors , 2021, Technological Forecasting and Social Change.
[5] Zita Vale,et al. Smart energy community: A systematic review with metanalysis , 2021, Energy Strategy Reviews.
[6] 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 .
[7] Byeong Ho Kang,et al. Performance evaluation of Hyperledger Fabric-enabled framework for pervasive peer-to-peer energy trading in smart Cyber-Physical Systems , 2021, Future Gener. Comput. Syst..
[8] George T. S. Ho,et al. A blockchain-based system to enhance aircraft parts traceability and trackability for inventory management , 2021, Expert Syst. Appl..
[9] Gülçin Büyüközkan,et al. A decision-making framework for evaluating appropriate business blockchain platforms using multiple preference formats and VIKOR , 2021, Inf. Sci..
[10] S. Kubler,et al. Innovative blockchain-based farming marketplace and smart contract performance evaluation , 2021, Journal of Cleaner Production.
[11] Sarah Bouraga,et al. A taxonomy of blockchain consensus protocols: A survey and classification framework , 2021, Expert Syst. Appl..
[12] Alexandr Kuznetsov,et al. Performance Analysis of Cryptographic Hash Functions Suitable for Use in Blockchain , 2021 .
[13] Srinath Perera,et al. A methodology for selection of a Blockchain platform to develop an enterprise system , 2021, J. Ind. Inf. Integr..
[14] Tugrul U. Daim,et al. Mining research and invention activity for innovation trends: case of blockchain technology , 2021, Scientometrics.
[15] Byeong Ho Kang,et al. A decision model for blockchain applicability into knowledge-based conversation system , 2021, Knowl. Based Syst..
[16] Yachao Li,et al. Design of a privacy-preserving decentralized energy trading scheme in blockchain network environment , 2021 .
[17] Alexa Böckel,et al. Blockchain for the Circular Economy: Analysis of the Research-Practice Gap , 2020, Sustainable Production and Consumption.
[18] Lukas König,et al. Comparing Blockchain Standards and Recommendations , 2020, Future Internet.
[19] Tugrul U. Daim,et al. Forecasting technological positioning through technology knowledge redundancy: Patent citation analysis of IoT, cybersecurity, and Blockchain , 2020 .
[20] Tunç D. Medeni,et al. Evaluating the feasibility of blockchain in logistics operations: A decision framework , 2020, Expert Syst. Appl..
[21] Hongwei Zheng,et al. An Assessment Framework for Distributed Ledger Technology in Financial Application , 2020, BSCI.
[22] S. Bhirud,et al. Cryptocurrency Wallet: A Review , 2020, 2020 4th International Conference on Computer, Communication and Signal Processing (ICCCSP).
[23] Laurent Njilla,et al. Measuring Decentrality in Blockchain Based Systems , 2020, IEEE Access.
[24] Jérémy Robert,et al. Permissioned blockchain frameworks in the industry: A comparison , 2020, ICT Express.
[25] Seyed Mojtaba Hosseini Bamakan,et al. A survey of blockchain consensus algorithms performance evaluation criteria , 2020, Expert Syst. Appl..
[26] Lingling Zi,et al. Blockchain applications, challenges and evaluation: A survey , 2020, Discret. Math. Algorithms Appl..
[27] Hamzeh Khazaei,et al. Performance Evaluation of Blockchain Systems: A Systematic Survey , 2020, IEEE Access.
[28] Anurag Shrivastava,et al. A Survey on Vulnerabilities and Performance Evaluation Criteria in Blockchain Technology , 2020, ADCAIJ: Advances in Distributed Computing and Artificial Intelligence Journal.
[29] Xiwei Xu,et al. On the performance of distributed ledgers for Internet of Things , 2020, Internet Things.
[30] Aleksandr Ometov,et al. Blockchain Evaluation Approaches: State-of-the-Art and Future Perspective , 2020, Sensors.
[31] David Mohaisen,et al. Contra-*: Mechanisms for Countering Spam Attacks on Blockchain Memory Pools , 2020, J. Netw. Comput. Appl..
[32] Damiano Di Francesco Maesa,et al. Blockchain 3.0 applications survey , 2020, J. Parallel Distributed Comput..
[33] Jie Wu,et al. BoR: Toward High-Performance Permissioned Blockchain in RDMA-Enabled Network , 2020, IEEE Transactions on Services Computing.
[34] Vladimir Stantchev,et al. Perspectives on risks and standards that affect the requirements engineering of blockchain technology , 2020, Comput. Stand. Interfaces.
[35] A. Elwalid,et al. Stability and Scalability of Blockchain Systems , 2020, Proc. ACM Meas. Anal. Comput. Syst..
[36] Marieke Huisman,et al. Practical Mutation Testing for Smart Contracts , 2019, DPM/CBT@ESORICS.
[37] Chunguang Bai,et al. A supply chain transparency and sustainability technology appraisal model for blockchain technology , 2019, Int. J. Prod. Res..
[38] Guy Pujolle,et al. A Vademecum on Blockchain Technologies: When, Which, and How , 2019, IEEE Communications Surveys & Tutorials.
[39] Albert Y. Zomaya,et al. DAGBENCH: A Performance Evaluation Framework for DAG Distributed Ledgers , 2019, 2019 IEEE 12th International Conference on Cloud Computing (CLOUD).
[40] Haibo Zhang,et al. Evaluating the Impact of Network Latency on the Safety of Blockchain Transactions , 2019, 2019 IEEE International Conference on Blockchain (Blockchain).
[41] Miguel Correia,et al. BlockSim: Blockchain Simulator , 2019, 2019 IEEE International Conference on Blockchain (Blockchain).
[42] Vladimir Korkhov,et al. Evaluation of Tools for Analyzing Smart Contracts in Distributed Ledger Technologies , 2019, ICCSA.
[43] Tilo Müller,et al. Evaluating Spread of ‘Gasless Send’ in Ethereum Smart Contracts , 2019, 2019 10th IFIP International Conference on New Technologies, Mobility and Security (NTMS).
[44] Zièd Choukair,et al. Anomaly Detection Model Over Blockchain Electronic Transactions , 2019, 2019 15th International Wireless Communications & Mobile Computing Conference (IWCMC).
[45] Stefan Schulte,et al. Dextt: Deterministic Cross-Blockchain Token Transfers , 2019, IEEE Access.
[46] Seongjoon Park,et al. Performance Analysis of DAG-Based Cryptocurrency , 2019, 2019 IEEE International Conference on Communications Workshops (ICC Workshops).
[47] Ning Zhang,et al. A Survey of Distributed Consensus Protocols for Blockchain Networks , 2019, IEEE Communications Surveys & Tutorials.
[48] Yong Shi,et al. Public blockchain evaluation using entropy and TOPSIS , 2019, Expert Syst. Appl..
[49] F. Richard Yu,et al. A Survey of Blockchain Technology Applied to Smart Cities: Research Issues and Challenges , 2019, IEEE Communications Surveys & Tutorials.
[50] Wei Ni,et al. Survey on blockchain for Internet of Things , 2019, Comput. Commun..
[51] Sylvain Kubler,et al. Linked Vocabulary Recommendation Tools for Internet of Things , 2019, ACM Comput. Surv..
[52] P. Goffard. Fraud risk assessment within blockchain transactions , 2019, Advances in Applied Probability.
[53] Gerhard Schwabe,et al. To Token or not to Token: Tools for Understanding Blockchain Tokens , 2018, ICIS.
[54] Muhammad Murtaza Yousaf,et al. Consensus Algorithms in Blockchain: Comparative Analysis, Challenges and Opportunities , 2018, 2018 12th International Conference on Open Source Systems and Technologies (ICOSST).
[55] Leandro Navarro-Moldes,et al. Blockchain for economically sustainable wireless mesh networks , 2018, Concurr. Comput. Pract. Exp..
[56] Kishor S. Trivedi,et al. Performance Modeling of Hyperledger Fabric (Permissioned Blockchain Network) , 2018, 2018 IEEE 17th International Symposium on Network Computing and Applications (NCA).
[57] J. Szczerbowski. Transaction Costs of Blockchain Smart Contracts , 2018 .
[58] Uwe Zdun,et al. Design Patterns for Smart Contracts in the Ethereum Ecosystem , 2018, 2018 IEEE International Conference on Internet of Things (iThings) and IEEE Green Computing and Communications (GreenCom) and IEEE Cyber, Physical and Social Computing (CPSCom) and IEEE Smart Data (SmartData).
[59] Michael Pisa,et al. Reassessing Expectations for Blockchain and Development , 2018, Innovations: Technology, Governance, Globalization.
[60] Yi Li,et al. Performance Analysis of Consensus Algorithm in Private Blockchain , 2018, 2018 IEEE Intelligent Vehicles Symposium (IV).
[61] Barbara Carminati,et al. Hybrid-IoT: Hybrid Blockchain Architecture for Internet of Things - PoW Sub-Blockchains , 2018, 2018 IEEE International Conference on Internet of Things (iThings) and IEEE Green Computing and Communications (GreenCom) and IEEE Cyber, Physical and Social Computing (CPSCom) and IEEE Smart Data (SmartData).
[62] Leandro Navarro-Moldes,et al. Towards Blockchain-enabled Wireless Mesh Networks , 2018, CRYBLOCK@MobiSys.
[63] Nir Kshetri,et al. 1 Blockchain's roles in meeting key supply chain management objectives , 2018, Int. J. Inf. Manag..
[64] Zhu Han,et al. Performance Analysis and Application of Mobile Blockchain , 2017, 2018 International Conference on Computing, Networking and Communications (ICNC).
[65] Kaiwen Zhang,et al. VIBES: fast blockchain simulations for large-scale peer-to-peer networks: demo , 2017, Middleware Posters and Demos.
[66] Gang Chen,et al. Untangling Blockchain: A Data Processing View of Blockchain Systems , 2017, IEEE Transactions on Knowledge and Data Engineering.
[67] Po-Han Chen,et al. A review of studies on green building assessment methods by comparative analysis , 2017 .
[68] Bart Preneel,et al. Publish or Perish: A Backward-Compatible Defense Against Selfish Mining in Bitcoin , 2017, CT-RSA.
[69] Sylvain Kubler,et al. A state-of the-art survey & testbed of fuzzy AHP (FAHP) applications , 2016, Expert Syst. Appl..
[70] Prateek Saxena,et al. Making Smart Contracts Smarter , 2016, IACR Cryptol. ePrint Arch..
[71] Hubert Ritzdorf,et al. On the Security and Performance of Proof of Work Blockchains , 2016, IACR Cryptol. ePrint Arch..
[72] Rita Almeida Ribeiro,et al. Normalization Techniques for Multi-Criteria Decision Making: Analytical Hierarchy Process Case Study , 2016, DoCEIS.
[73] Damon McCoy,et al. Stressing Out: Bitcoin "Stress Testing" , 2016, Financial Cryptography Workshops.
[74] Rob Jansen,et al. Shadow-Bitcoin: Scalable Simulation via Direct Execution of Multi-threaded Applications , 2015, IACR Cryptol. ePrint Arch..
[75] Abhishek Gupta,et al. Fast Interest recovery in content centric networking under lossy environment , 2015, 2015 12th Annual IEEE Consumer Communications and Networking Conference (CCNC).
[76] Tim Güneysu,et al. Compact Implementation and Performance Evaluation of Hash Functions in ATtiny Devices , 2012, CARDIS.
[77] Ingrid Verbauwhede,et al. Prototyping platform for performance evaluation of SHA-3 candidates , 2010, 2010 IEEE International Symposium on Hardware-Oriented Security and Trust (HOST).
[78] K. Poulose Jacob,et al. Performance Evaluation of Popular Hash Functions , 2010 .
[79] Gwo-Hshiung Tzeng,et al. Comparison among three analytical methods for knowledge communities group-decision analysis , 2007, Expert Syst. Appl..
[80] Pearl Brereton,et al. Lessons from applying the systematic literature review process within the software engineering domain , 2007, J. Syst. Softw..
[81] Franck Cappello,et al. Grid'5000: A Large Scale And Highly Reconfigurable Experimental Grid Testbed , 2006, Int. J. High Perform. Comput. Appl..
[82] Lisa Simpson,et al. Do Decision Makers Know What They Prefer?: MAVT and ELECTRE II , 1996 .
[83] T. L. Saaty. A Scaling Method for Priorities in Hierarchical Structures , 1977 .
[84] S. Kubler,et al. BlockPerf: A Hybrid Blockchain Emulator/Simulator Framework , 2021, IEEE Access.
[85] Olga Labazova,et al. Towards a Framework for Evaluation of Blockchain Implementations , 2019, ICIS.
[86] Sukrit Kalra,et al. ZEUS: Analyzing Safety of Smart Contracts , 2018, NDSS.
[87] Navtej Singh Ghumman,et al. Mininet as Software Defined Networking Testing Platform , 2014 .
[88] V. Modrák,et al. METRICS IN ORGANIZATIONAL CENTRALIZATION AND DECENTRALIZATION , 2014 .
[89] Pearl Brereton,et al. Systematic literature reviews in software engineering - A systematic literature review , 2009, Inf. Softw. Technol..
[90] Andreas Tolk,et al. Applying the Levels of Conceptual Interoperability Model in Support of Integratability, Interoperabi , 2007 .