With the rapid development of information technology and the growing demand for network security, traditional static encryption methods have gradually failed to meet the requirements of modern environments for flexibility and security. Dynamic encryption technology has emerged to dynamically adjust the encryption policy according to the network status, data type and actual needs, thus providing a more efficient and flexible protection program. This paper summarizes the basic principles of dynamic encryption technology and its encryption and decryption process, focusing on the analysis of the acquisition of dynamic key. Compared to static encryption, dynamic encryption is able to cope with different threat scenarios in changing environments, enhancing data security and availability. The article also reviews the current research progress and major challenges facing dynamic cryptography, and explores future directions, especially the potential for applications in emerging areas such as quantum cryptography, artificial intelligence, and privacy computing. Dynamic encryption technology shows great application prospects in dealing with future complex security threats and safeguarding data privacy.
Solomon SarpongSamuel Opuni-BasoaKwaafo Akoto Awuah-Mensah
Muhammed J. Al-MuhammedRaed Abu Zitar