Uses of Blockchain for Daily Life : A Survey

Authors

  • Tapash Kumar Saha Student, Sheat College of Engineering, Babatpur, Varanasi, Uttar Pradesh, India Author
  • Sonam Singh Assistant Professor, Department of Computer Science & Engineering, Sheat College of Engineering, Babatpur, Varanasi, Uttar Pradesh, India Author

Keywords:

Blockchain Technology, Bit Coin and Ethereum, Military, Internet of Things, Smart Grids

Abstract

Blockchain is a modern technology that has revolutionized the way society interacts and trades. It could be defined as a chain of blocks that stores information with digital signatures in a distributed and decentralized network. This technique was first adopted for the creation of digital crypto currencies, such as Bit coin and Ethereum. However, research and industrial studies have recently focused on the opportunities that blockchain provides in various other application domains to take advantage of the main features of this technology, such as: decentralization, persistency, anonymity, and auditability. This paper reviews the use of blockchain in several interesting fields, namely: finance, healthcare, information systems, wireless networks, Internet of Things, smart grids, governmental services, and military/defense. In addition, our paper identifies the challenges to overcome, to guarantee better use of this technology.

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References

Salah, K.; Rehman, M.H.U.; Nizamuddin, N.; Al-Fuqaha, A. Blockchain for AI: Review and open research challenges. IEEE Access 2019, 7, 10127–10149. [Google Scholar] [CrossRef]

Lahami, M.; Maâlej, A.J.; Krichen, M.; Hammami, M.A. A Comprehensive Review of Testing Blockchain Oriented Software. In Proceedings of the 17th International Conference on Evaluation of Novel Approaches to Software Engineering (ENASE 2022), Online, 25–26 April 2022; pp. 355–362. [Google Scholar]

Litke, A.; Anagnostopoulos, D.; Varvarigou, T. Blockchains for supply chain management: Architectural elements and challenges towards a global scale deployment. Logistics 2019, 3, 5. [Google Scholar] [CrossRef] [Green Version]

Kouhizadeh, M.; Sarkis, J. Blockchain practices, potentials, and perspectives in greening supply chains. Sustainability 2018, 10, 3652. [Google Scholar] [CrossRef] [Green Version]

Schilling, L.; Uhlig, H. Some simple bitcoin economics. J. Monet. Econ. 2019, 106, 16–26. [Google Scholar] [CrossRef]

Ravishankar, C.V.; Kavitha, K.S. Blockchain Applications that are Transforming the Society. In Convergence of Internet of Things and Blockchain Technologies; Gururaj, H.L., Ravi Kumar, V., Goundar, S., Elngar, A.A., Swathi, B.H., Eds.; Springer: Cham, Switzerland, 2022; pp. 23–39. [Google Scholar] [CrossRef]

Zaabar, B.; Cheikhrouhou, O.; Jamil, F.; Ammi, M.; Abid, M. HealthBlock: A secure blockchain-based healthcare data management system. Comput. Netw. 2021, 200, 108500. [Google Scholar] [CrossRef]

Jamil, F.; Cheikhrouhou, O.; Jamil, H.; Koubaa, A.; Derhab, A.; Ferrag, M.A. PetroBlock: A blockchain-based payment mechanism for fueling smart vehicles. Appl. Sci. 2021, 11, 3055. [Google Scholar] [CrossRef]

Frikha, T.; Chaabane, F.; Aouinti, N.; Cheikhrouhou, O.; Ben Amor, N.; Kerrouche, A. Implementation of Blockchain Consensus Algorithm on Embedded Architecture. Secur. Commun. Netw. 2021, 2021, 9918697. [Google Scholar] [CrossRef]

Al-Jaroodi, J.; Mohamed, N. Blockchain in industries: A survey. IEEE Access 2019, 7, 36500–36515. [Google Scholar] [CrossRef]

Pal, A.; Tiwari, C.K.; Haldar, N. Blockchain for business management: Applications, challenges and potentials. J. High Technol. Manag. Res. 2021, 32, 100414. [Google Scholar] [CrossRef]

Zhang, L.; Xie, Y.; Zheng, Y.; Xue, W.; Zheng, X.; Xu, X. The challenges and countermeasures of blockchain in finance and economics. Syst. Res. Behav. Sci. 2020, 37, 691–698. [Google Scholar] [CrossRef]

Tapscott, A.; Tapscott, D. How blockchain is changing finance. Harv. Bus. Rev. 2017, 1, 2–5. [Google Scholar]

Prybutok, V.R.; Sauser, B. Theoretical and practical applications of blockchain in healthcare information management. Inf. Manag. 2022, 59, 103649. [Google Scholar]

Adere, E.M. Blockchain in healthcare and IoT: A systematic literature review. Array 2022, 14, 100139. [Google Scholar] [CrossRef]

Abbas, A.; Alroobaea, R.; Krichen, M.; Rubaiee, S.; Vimal, S.; Almansour, F.M. Blockchain-assisted secured data management framework for health information analysis based on Internet of Medical Things. Pers. Ubiquitous Comput. 2021, 1–14. [Google Scholar]

Morozova, M.; Stepanov, Y.G.; Burlov, D. Innovations in Tourism and Hospitality through Modern Information Systems and Blockchain Technologies. Components Sci. Technol. Prog. 2022, 42. [Google Scholar]

Cao, H.; He, H.; Tian, J. A Scientific Research Information System via Intelligent Blockchain Technology for the Applications in University Management. Mob. Inf. Syst. 2022, 2022, 7512692. [Google Scholar] [CrossRef]

Berdik, D.; Otoum, S.; Schmidt, N.; Porter, D.; Jararweh, Y. A survey on blockchain for information systems management and security. Inf. Process. Manag. 2021, 58, 102397. [Google Scholar] [CrossRef]

Rathod, T.; Jadav, N.K.; Alshehri, M.D.; Tanwar, S.; Sharma, R.; Felseghi, R.A.; Raboaca, M.S. Blockchain for Future Wireless Networks: A Decade Survey. Sensors 2022, 22, 4182. [Google Scholar] [CrossRef]

Roopa, V.; Pradhan, H.S. Blockchain Based Spectrum Sensing for Secured Cognitive Radio wireless networks. In Proceedings of the 2022 IEEE 11th International Conference on Communication Systems and Network Technologies (CSNT), Indore, India, 23–24 April 2022; pp. 553–559. [Google Scholar]

Choudhary, A.K.; Rahamatkar, S. Improving Trust Levels in Wireless Networks Using Blockchain Powered Dempster Shaffer Route Optimization. ECS Trans. 2022, 107, 2095–2115. [Google Scholar]

Huo, R.; Zeng, S.; Wang, Z.; Shang, J.; Chen, W.; Huang, T.; Wang, S.; Yu, F.R.; Liu, Y. A comprehensive survey on blockchain in industrial internet of things: Motivations, research progresses, and future challenges. IEEE Commun. Surv. Tutor. 2022, 24, 88–122. [Google Scholar] [CrossRef]

Wang, J.; Chen, J.; Ren, Y.; Sharma, P.K.; Alfarraj, O.; Tolba, A. Data security storage mechanism based on blockchain industrial Internet of Things. Comput. Ind. Eng. 2022, 164, 107903. [Google Scholar] [CrossRef]

Al Sadawi, A.; Hassan, M.S.; Ndiaye, M. A Survey on the Integration of Blockchain With IoT to Enhance Performance and Eliminate Challenges. IEEE Access 2021, 9, 54478–54497. [Google Scholar] [CrossRef]

Hua, W.; Chen, Y.; Qadrdan, M.; Jiang, J.; Sun, H.; Wu, J. Applications of blockchain and artificial intelligence technologies for enabling prosumers in smart grids: A review. Renew. Sustain. Energy Rev. 2022, 161, 112308. [Google Scholar] [CrossRef]

Pareek, A.; Singh, P.; Lather, J. Blockchain Technology in Smart Grids and Microgrids: A Critical Review of Challenges and Opportunities. Power Electron. High Volt. Smart Grid 2022, 353–363. [Google Scholar]

Mollah, M.B.; Zhao, J.; Niyato, D.; Lam, K.Y.; Zhang, X.; Ghias, A.M.; Koh, L.H.; Yang, L. Blockchain for future smart grid: A comprehensive survey. IEEE Internet Things J. 2020, 8, 18–43. [Google Scholar] [CrossRef]

Verma, S.; Sheel, A. Blockchain for government organizations: Past, present and future. J. Glob. Oper. Strateg. Sourc. 2022. [Google Scholar] [CrossRef]

Alexopoulos, C.; Charalabidis, Y.; Androutsopoulou, A.; Loutsaris, M.A.; Lachana, Z. Benefits and Obstacles of Blockchain Applications in E-Government. 2019. Available online: https://scholarspace.manoa.hawaii.edu/items/07e8c65a-7f32-4023-bde6-29a95dd425d7 (accessed on 15 February 2022).

Mohamed, R.; Abas, H.; Yusof, F.M. Blockchain resilient communication in military: A systematic literature review. Open Int. J. Inform. 2022, 10, 51–62. [Google Scholar]

Akter, R.; Golam, M.; Doan, V.S.; Lee, J.M.; Kim, D.S. IoMT-Net: Blockchain Integrated Unauthorized UAV Localization Using Lightweight Convolution Neural Network for Internet of Military Things. IEEE Internet Things J. 2022. [Google Scholar] [CrossRef]

Hasan, M.K.; Alkhalifah, A.; Islam, S.; Babiker, N.; Habib, A.; Aman, A.H.M.; Hossain, M. Blockchain Technology on Smart Grid, Energy Trading, and Big Data: Security Issues, Challenges, and Recommendations. Wirel. Commun. Mob. Comput. 2022, 2022, 9065768. [Google Scholar] [CrossRef]

Abdelmaboud, A.; Ahmed, A.I.A.; Abaker, M.; Eisa, T.A.E.; Albasheer, H.; Ghorashi, S.A.; Karim, F.K. Blockchain for IoT Applications: Taxonomy, Platforms, Recent Advances, Challenges and Future Research Directions. Electronics 2022, 11, 630. [Google Scholar] [CrossRef]

Raja Santhi, A.; Muthuswamy, P. Influence of blockchain technology in manufacturing supply chain and logistics. Logistics 2022, 6, 15. [Google Scholar] [CrossRef]

Guru, D.; Perumal, S.; Varadarajan, V. Approaches towards blockchain innovation: A survey and future directions. Electronics 2021, 10, 1219. [Google Scholar] [CrossRef]

Khoshavi, N.; Tristani, G.; Sargolzaei, A. Blockchain Applications to Improve Operation and Security of Transportation Systems: A Survey. Electronics 2021, 10, 629. [Google Scholar]

Bhutta, M.N.M.; Khwaja, A.A.; Nadeem, A.; Ahmad, H.F.; Khan, M.K.; Hanif, M.A.; Song, H.; Alshamari, M.; Cao, Y. A survey on blockchain technology: Evolution, architecture and security. IEEE Access 2021, 9, 61048–61073. [Google Scholar] [CrossRef]

Rawat, D.B.; Chaudhary, V.; Doku, R. Blockchain technology: Emerging applications and use cases for secure and trustworthy smart systems. J. Cybersecur. Priv. 2020, 1, 4–18. [Google Scholar] [CrossRef]

Zuo, Y. Making smart manufacturing smarter—A survey on blockchain technology in Industry 4.0. Enterp. Inf. Syst. 2021, 15, 1323–1353. [Google Scholar]

Qureshi, A.; Megías Jiménez, D. Blockchain-based multimedia content protection: Review and open challenges. Appl. Sci. 2020, 11, 1. [Google Scholar]

Srivastava, G.; Dhar, S.; Dwivedi, A.D.; Crichigno, J. Blockchain education. In Proceedings of the 2019 IEEE Canadian Conference of Electrical and Computer Engineering (CCECE), Edmonton, AB, Canada, 5–8 May 2019; pp. 1–5. [Google Scholar]

Lemieux, V.L. Trusting records: Is Blockchain technology the answer? Rec. Manag. J. 2016, 26, 110–139. [Google Scholar] [CrossRef]

Johar, S.; Ahmad, N.; Asher, W.; Cruickshank, H.; Durrani, A. Research and applied perspective to blockchain technology: A comprehensive survey. Appl. Sci. 2021, 11, 6252. [Google Scholar] [CrossRef]

Li, X.; Jiang, P.; Chen, T.; Luo, X.; Wen, Q. A survey on the security of blockchain systems. Future Gener. Comput. Syst. 2020, 107, 841–853. [Google Scholar] [CrossRef] [Green Version]

Yan, B.; Yang, Z.; Ren, Y.; Tan, X.; Liu, E. Microblog sentiment classification using parallel SVM in apache spark. In Proceedings of the 2017 IEEE International Congress on Big Data (BigData Congress), Honolulu, HI, USA, 25–30 June 2017; pp. 282–288. [Google Scholar]

Nakamoto, S. Bitcoin: A peer-to-peer electronic cash system. Decentralized Bus. Rev. 2008, 21260. [Google Scholar]

Zheng, Z.; Xie, S.; Dai, H.N.; Chen, X.; Wang, H. Blockchain challenges and opportunities: A survey. Int. J. Web Grid Serv. 2018, 14, 352–375. [Google Scholar]

Pilkington, M. Blockchain technology: Principles and applications. In Research Handbook on Digital Transformations; Edward Elgar Publishing: Cheltenham, UK, 2016. [Google Scholar]

Tschorsch, F.; Scheuermann, B. Bitcoin and beyond: A technical survey on decentralized digital currencies. IEEE Commun. Surv. Tutor. 2016, 18, 2084–2123. [Google Scholar] [CrossRef]

Yao, X.; Zhu, T. Blockchain is to create a new ecology of cross-border payment. Financ. Expo 2017, 5, 46–48. [Google Scholar]

Chhabra, V.; Bathla, S.; Maheshwari, H. An overview of blockchain technology and comparison between various cryptocurrencies. J. Emerg. Technol. Innov. Res. 2019, 6, 68–71. [Google Scholar]

Garriga, M.; Dalla Palma, S.; Arias, M.; De Renzis, A.; Pareschi, R.; Andrew Tamburri, D. Blockchain and cryptocurrencies: A classification and comparison of architecture drivers. Concurr. Comput. Pract. Exp. 2021, 33, e5992. [Google Scholar] [CrossRef]

Demirkan, S.; Demirkan, I.; McKee, A. Blockchain technology in the future of business cyber security and accounting. J. Manag. Anal. 2020, 7, 189–208. [Google Scholar] [CrossRef]

Hassani, H.; Huang, X.; Silva, E. Banking with blockchained big data. J. Manag. Anal. 2018, 5, 256–275. [Google Scholar]

Li, J.; Wang, J.; Wangh, S.; Zhou, Y. Mobile payment with alipay: An application of extended technology acceptance model. IEEE Access 2019, 7, 50380–50387. [Google Scholar]

Lumpkin, J.; Cohn, S.P.; Blair, J.S. Uniform data standards for patient medical record information. Natl. Comm. Vital Health Stat. 2003, 53. [Google Scholar]

Jabbar, R.; Fetais, N.; Krichen, M.; Barkaoui, K. Blockchain technology for healthcare: Enhancing shared electronic health record interoperability and integrity. In Proceedings of the 2020 IEEE International Conference on Informatics, IoT, and Enabling Technologies (ICIoT), Doha, Qatar, 2–5 February 2020; pp. 310–317. [Google Scholar]

Zhuang, Y.; Sheets, L.R.; Chen, Y.W.; Shae, Z.Y.; Tsai, J.J.; Shyu, C.R. A patient-centric health information exchange framework using blockchain technology. IEEE J. Biomed. Health Inform. 2020, 24, 2169–2176. [Google Scholar] [PubMed]

Zhang, P.; Schmidt, D.C.; White, J.; Lenz, G. Blockchain technology use cases in healthcare. In Advances in Computers; Elsevier: Amsterdam, The Netherlands, 2018; Volume 111, pp. 1–41. [Google Scholar]

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Published

25-04-2024

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Section

Research Articles

How to Cite

[1]
Tapash Kumar Saha and Sonam Singh, “Uses of Blockchain for Daily Life : A Survey”, Int J Sci Res Sci Eng Technol, vol. 11, no. 2, pp. 491–507, Apr. 2024, Accessed: May 16, 2024. [Online]. Available: https://ijsrset.com/index.php/home/article/view/IJSRSET2411272

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