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Review of Challenges in Blockchain Scalability

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Review of Challenges in Blockchain Scalability ( review-challenges-blockchain-scalability )

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Appl. Sci. 2021, 11, 9372 24 of 27 20. Thakur, S. and J.G. Breslin. Cost Analysis of Blockchains-based Peer to Peer Energy Trade. in 2020 IEEE International Conference on Environment and Electrical Engineering and 2020 IEEE Industrial and Commercial Power Systems Europe (EEEIC/I&CPS Europe). 2020. IEEE. 21. Mazlan, A.A., et al., Scalability challenges in healthcare blockchain system—a systematic review. IEEE Access, 2020. 8: p. 23663-23673. 22. Xie, J., et al., A survey on the scalability of blockchain systems. IEEE Network, 2019. 33(5): p. 166-173. 23. Yli-Huumo, J., et al., Where is current research on blockchain technology?—a systematic review. PloS one, 2016. 11(10): p. e0163477. 24. Nguyen, G.-T. and K. Kim, A survey about consensus algorithms used in blockchain. Journal of Information processing systems, 2018. 14(1): p. 101-128. 25. Yu, G., et al., Survey: Sharding in blockchains. IEEE Access, 2020. 8: p. 14155-14181. 26. 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Financial Innovation, 2016. 2(1): p. 1-9. 32. Tosh, D., et al. CloudPoS: A proof-of-stake consensus design for blockchain integrated cloud. in 2018 IEEE 11th International Conference on Cloud Computing (CLOUD). 2018. IEEE. 33. Cao, B., et al., A many-objective optimization model of industrial internet of things based on private blockchain. IEEE Network, 2020. 34(5): p. 78-83. 34. Ferrag, M.A., et al., Blockchain technologies for the internet of things: Research issues and challenges. IEEE Internet of Things Journal, 2018. 6(2): p. 2188-2204. 35. Wang, X., et al., Survey on blockchain for Internet of Things. Computer Communications, 2019. 136: p. 10-29. 36. Sanka, A.I. and R.C. Cheung. Efficient high performance FPGA based NoSQL caching system for blockchain scalability and throughput improvement. in 2018 26th International Conference on Systems Engineering (ICSEng). 2018. IEEE. 37. Croman, K., et al. 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