Image Encryption and Decryption System with Clock Controlled Destruction
Yingqi Wang, Luping Wang, Mei-Xue Dong, Jiahua Tang, Mingze Sun, Ruilin Wang, Manyue Hu, Hang Zhang
Abstract
Yingqi Wang, Luping Wang, Mei-Xue Dong, Jiahua Tang, Mingze Sun, Ruilin Wang, Manyue Hu, Hang Zhang
Abstract
Image encryption is an important tool for encrypted communication. Pixel dots can carry a lot of information and are more confusing than text encryption, which cannot be recognized with the naked eye and cannot be easily analyzed for encryption laws, so it has an important position in modern encryption technology. We have improved the traditional image encryption technology by using symmetric and asymmetric encryption techniques and adding the clock parameter as a factor to participate in the synthesis to achieve the automatic destruction function. This algorithm has a much higher encryption and decryption speed than conventional encryption algorithms due to the operation at the array level and the use of xor encryption on bit operations. After an experiment of encryption and decryption of images, we proved that this method has a promising application for commercial and military encrypted communications.
OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Image encryption is an important tool for encrypted communication. Pixel dots can carry a lot of information and are more confusing than text encryption, which cannot be recognized with the naked eye and cannot be easily analyzed for encryption laws, so it has an important position in modern encryption technology. We have improved the traditional image encryption technology by using symmetric and asymmetric encryption techniques and adding the clock parameter as a factor to participate in the synthesis to achieve the automatic destruction function. This algorithm has a much higher encryption and decryption speed than conventional encryption algorithms due to the operation at the array level and the use of xor encryption on bit operations. After an experiment of encryption and decryption of images, we proved that this method has a promising application for commercial and military encrypted communications.
Key concepts: Encryption, Filesystem-level encryption, On-the-fly encryption, Multiple encryption, 40-bit encryption, Probabilistic encryption, 56-bit encryption, Computer science