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Huang, H., Zhu, P., **ao, F., Sun, X., & Huang, Q. (2020). A blockchain-based scheme for privacy-preserving and secure sharing of medical data. Computers & Security, 99, 102010.Search in Google Scholar
Ma, Z., Wang, L., & Zhao, W. (2020). Blockchain-driven trusted data sharing with privacy protection in IoT sensor network. IEEE Sensors Journal, 21(22), 25472-25479.Search in Google Scholar
Zhang, P., White, J., Schmidt, D. C., Lenz, G., & Rosenbloom, S. T. (2018). FHIRChain: applying blockchain to securely and scalably share clinical data. Computational and structural biotechnology journal, 16, 267-278.Search in Google Scholar
Pournaghi, S. M., Bayat, M., & Farjami, Y. (2020). MedSBA: a novel and secure scheme to share medical data based on blockchain technology and attribute-based encryption. Journal of Ambient Intelligence and Humanized Computing, 11(11), 4613-4641.Search in Google Scholar
Ullah, Z., Raza, B., Shah, H., Khan, S., & Waheed, A. (2022). Towards blockchain-based secure storage and trusted data sharing scheme for IoT environment. IEEE access, 10, 36978-36994.Search in Google Scholar
Dai, W., Dai, C., Choo, K. K. R., Cui, C., Zou, D., & **, H. (2019). SDTE: A secure blockchain-based data trading ecosystem. IEEE Transactions on Information Forensics and Security, 15, 725-737.Search in Google Scholar
Wang, S., Wang, X., & Zhang, Y. (2019). A secure cloud storage framework with access control based on blockchain. IEEE access, 7, 112713-112725.Search in Google Scholar
Khan, P. W., & Byun, Y. (2020). A blockchain-based secure image encryption scheme for the industrial Internet of Things. Entropy, 22(2), 175.Search in Google Scholar
Shafagh, H., Burkhalter, L., Hithnawi, A., & Duquennoy, S. (2017, November). Towards blockchain-based auditable storage and sharing of IoT data. In Proceedings of the 2017 on cloud computing security workshop (pp. 45-50).Search in Google Scholar
Singh, P., Masud, M., Hossain, M. S., & Kaur, A. (2021). Blockchain and homomorphic encryption-based privacy-preserving data aggregation model in smart grid. Computers & Electrical Engineering, 93, 107209.Search in Google Scholar
Hu, S., Cai, C., Wang, Q., Wang, C., Luo, X., & Ren, K. (2018, April). Searching an encrypted cloud meets blockchain: A decentralized, reliable and fair realization. In IEEE INFOCOM 2018-IEEE Conference on Computer Communications (pp. 792-800). IEEE.Search in Google Scholar
Do, H. G., & Ng, W. K. (2017, June). Blockchain-based system for secure data storage with private keyword search. In 2017 IEEE World Congress on Services (SERVICES) (pp. 90-93). IEEE.Search in Google Scholar
Li, B., Feng, Y., **ong, Z., Yang, W., & Liu, G. (2021). Research on AI security enhanced encryption algorithm of autonomous IoT systems. Information sciences, 575, 379-398.Search in Google Scholar
Rahman, M. S., Khalil, I., Atiquzzaman, M., & Yi, X. (2020). Towards privacy preserving AI based composition framework in edge networks using fully homomorphic encryption. Engineering Applications of Artificial Intelligence, 94, 103737.Search in Google Scholar
AI, M., & LIU, H. (2021). Privacy-preserving Of Electricity Data Based On Group Signature And Homomorphic Encryption. Int. J. of Electronics Engineering and Applications, 9(2), 11-20.Search in Google Scholar
Le Nguyen, B., Lydia, E. L., Elhoseny, M., Pustokhina, I., Pustokhin, D. A., Selim, M. M., ... & Shankar, K. (2020). Privacy preserving blockchain technique to achieve secure and reliable sharing of IoT data. Computers, Materials & Continua, 65(1), 87-107.Search in Google Scholar
Shen, M., Tang, X., Zhu, L., Du, X., & Guizani, M. (2019). Privacy-preserving support vector machine training over blockchain-based encrypted IoT data in smart cities. IEEE Internet of Things Journal, 6(5), 7702-7712.Search in Google Scholar
Guo, Y., Zhang, C., & Jia, X. (2020, June). Verifiable and forward-secure encrypted search using blockchain techniques. In ICC 2020-2020 IEEE international conference on communications (ICC) (pp. 1-7). IEEE.Search in Google Scholar
Tahir, S., & Rajarajan, M. (2018, July). Privacy-preserving searchable encryption framework for permissioned blockchain networks. In 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) (pp. 1628-1633). IEEE.Search in Google Scholar
**, P., Zhang, X., Wang, L., Liu, W., & Peng, S. (2022). A review of Blockchain-based secure sharing of healthcare data. Applied Sciences, 12(15), 7912.Search in Google Scholar
Agyekum, K. O. B. O., **a, Q., Sifah, E. B., Cobblah, C. N. A., **a, H., & Gao, J. (2021). A proxy re-encryption approach to secure data sharing in the internet of things based on blockchain. IEEE Systems Journal, 16(1), 1685-1696.Search in Google Scholar
Chinnasamy, P., Deepalakshmi, P., Dutta, A. K., You, J., & Joshi, G. P. (2021). Ciphertext-policy attribute-based encryption for cloud storage: Toward data privacy and authentication in AI-enabled IoT system. Mathematics, 10(1), 68.Search in Google Scholar
Yaji, S., Bangera, K., & Neelima, B. (2018, December). Privacy preserving in blockchain based on partial homomorphic encryption system for AI applications. In 2018 IEEE 25th International Conference on High Performance Computing Workshops (HiPCW) (pp. 81-85). IEEE.Search in Google Scholar
Peng, L., & Qiu, M. (2024, July). AI in Healthcare Data Privacy-Preserving: Enhanced Trade-Off Between Security and Utility. In International Conference on Knowledge Science, Engineering and Management (pp. 349-360). Singapore: Springer Nature Singapore.Search in Google Scholar
Raparthi, M. (2021). Privacy-Preserving IoT Data Management with Blockchain and AI-A Scholarly Examination of Decentralized Data Ownership and Access Control Mechanisms. Internet of Things and Edge Computing Journal, 1(2), 1-10.Search in Google Scholar
Dodda, S. B., Maruthi, S., Yellu, R. R., Thuniki, P., & Reddy, S. R. B. (2022). Federated Learning for Privacy-Preserving Collaborative AI: Exploring federated learning techniques for training AI models collaboratively while preserving data privacy. Australian Journal of Machine Learning Research & Applications, 2(1), 13-23.Search in Google Scholar
Chowdhury, R. H. (2024). Blockchain and AI: Driving the future of data security and business intelligence. World Journal of Advanced Research and Reviews, 23(1), 2559-2570.Search in Google Scholar
Matilde Reitano,Gioacchino Pappalardo,Roberta Selvaggi,Carla Zarbà & Gaetano Chinnici. (2024). Factors influencing consumer perceptions of food tracked with blockchain technology. A systematic literature review. Applied Food Research(2),100455-100455.Search in Google Scholar
Haiping Si,Weixia Li,Nan Su,Tingting Li,Yanling Li,Chuanhu Zhang... & Changxia Sun. (2024). A cross-chain access control mechanism based on blockchain and the threshold Paillier cryptosystem. Computer Communications68-80.Search in Google Scholar
Jiby J. Puthiyidam,Shelbi Joseph & Bharat Bhushan. (2024). Temporal ECDSA: A timestamp and signature mask enabled ECDSA algorithm for IoT client node authentication. Computer Communications 307-323.Search in Google Scholar
Mouna Bedoui,Belgacem Bouallegue,12,Abdelmoty M. Ahmed,Belgacem Hamdi,13... & M. Khattab. (2023). A Secure Hardware Implementation for Elliptic Curve Digital Signature Algorithm. COMPUTER SYSTEMS SCIENCE AND ENGINEERING(3),2177-2193.Search in Google Scholar