Efficient and Secure Mobile Data Encryption in Cloud Computing: ECC, AES, and Blockchain Solutions
Keywords:
Cloud security, mobile encryption, blockchain, ECC, AES, and data integrity.Abstract
Background information: This study uses blockchain technology, Elliptic Curve Cryptography
(ECC), and Advanced Encryption Standard (AES) to investigate safe and effective mobile data
encryption in cloud computing. Large data quantities are secured by AES, blockchain improves
integrity, and ECC guarantees lightweight encryption. In cloud-mobile systems, the method
tackles data performance, secrecy, and integrity.
Objectives: To provide a safe and effective encryption framework that combines blockchain,
AES, and ECC to safeguard mobile data while it is being sent and stored in cloud environments
while guaranteeing high performance, strong integrity, and adherence to contemporary data
protection regulations.
Methods: The suggested system utilizes AES to encrypt data, ECC for exchanging keys, and
blockchain for verification of integrity over tamper. The performance requirements tested
empirically in the context of clouds involve data throughput, encryption/decryption speed, and
resistance towards unwanted access. Empirical results: To provide a safe and effective encryption framework that combines
blockchain, AES, and ECC to safeguard mobile data while it is being sent and stored in cloud
environments while guaranteeing high performance, strong integrity, and adherence to
contemporary data protection regulations.
Conclusion: The mobile data encryption in a cloud environment utilizes a combination of ECC,
AES, and blockchain to ensure surety strong security is provided with efficiency and scalability.
The method proves to be the best for contemporary cloud-based mobile systems since it addresses
confidentiality as well as demands for real-time processing and integrity