This work is licensed under the Creative Commons Attribution 4.0 International License.
Zeng, Z., Li, Y., Cao, Y., Zhao, Y., Zhong, J., & Sidorov, D., et al. (2020). Blockchain technology for information security of the energy internet: fundamentals, features, strategy and application. Energies, 13.Search in Google Scholar
Ding, W., Wang, G., Xu, A., Chen, H., & Hong, C. (2018). Research on key technologies and information security issues of energy blockchain. Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, 38(4), 1026-1034.Search in Google Scholar
Kolokotronis, N., Limniotis, K., Shiaeles, S., & Griffiths, R. (2019). Blockchain technologies for enhanced security and privacy in the internet of things. IEEE Consumer Electronics Magazine, 8(3).Search in Google Scholar
Piper, L. J. W. (2013). Identification and application of security measures for petrochemical industrial control systems. Journal of Loss Prevention in the Process Industries.Search in Google Scholar
Fu, Y., Zhu, J., & Gao, S. (2018). Cps information security risk evaluation based on blockchain and big data. Tehnicki Vjesnik, 25(6), 1843-1850.Search in Google Scholar
Andrés Marín-López, Chica-Manjarrez, S., Arroyo, D., Almenares-Mendoza, F., & Daniel Díaz-Sánchez. (2020). Security information sharing in smart grids: persisting security audits to the blockchain. Electronics, 9(11), 1865.Search in Google Scholar
Winter, T. (2018). The Advantages and Challenges of the Blockchain for Smart Grids.Search in Google Scholar
Duan, R., & Guo, L. (2021). Application of blockchain for internet of things: a bibliometric analysis. Mathematical Problems in Engineering, 2021(6), 1-16.Search in Google Scholar
Li, D., Hu, Y., & Lan, M. (2020). Iot device location information storage system based on blockchain. Future Generation Computer Systems, 109, 95-102.Search in Google Scholar
Zhan, X., Zhou, Z., Zhou, W., Yan, Y., Yao, J., & Zhao, Y. S. (2023). Wavelength-tunable circularly polarized laser arrays for multidimensional information encryption. Advanced Optical Materials.Search in Google Scholar
Ye, Zhang, Biao, Xu, Nanrun, & Zhou. (2017). A novel image compression–encryption hybrid algorithm based on the analysis sparse representation. Optics Communications.Search in Google Scholar
Migliore, V., Real, M. M., Lapotre, V., Tisserand, A., & Gogniat, G. (2017). Hardware/software co-design of an accelerator for fv homomorphic encryption scheme using karatsuba algorithm. IEEE Transactions on Computers, PP(99), 335-347.Search in Google Scholar
Bhardwaj, R. (2018). Enhanced encrypted reversible data hiding algorithm with minimum distortion through homomorphic encryption. Journal of Electronic Imaging, 27(2), 1.Search in Google Scholar
Liu, J. L., Zhang, M., Tong, X., & Wang, Z. (2022). Image compression and encryption algorithm based on 2d compressive sensing and hyperchaotic system. Multimedia Systems, 28, 595-610.Search in Google Scholar
Gao, H., & Wang, X. (2021). Chaotic image encryption algorithm based on zigzag transform with bidirectional crossover from random position. IEEE Access, PP(99), 1-1.Search in Google Scholar
Chong, J., Xie, S., Zhang, J., & Liu, D. (2021). Block color image encryption algorithm based on elementary cellular automata and dna sequence operations. Journal of Electronic Imaging, 30.Search in Google Scholar
Zhang, Q., Han, J., & Ye, Y. (2021). Multi-image encryption algorithm based on image hash, bit-plane decomposition and dynamic dna coding. IET image processing(4), 15.Search in Google Scholar