A proposed client based key management framework to secure information in cloud storage for public SaaS

ISSN: 22773878
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Abstract

Distributed computing is the procedure to get different things like servers, stockpiling, programming, and equipment over the internet whenever and anyplace. This component makes for various clients to get to them effectively as a utility with a few potential dangers, which requests the security systems. Subsequently, the requirement for the cryptographic calculation is unavoidable for the exchange of information in a progressively secure way, giving classification and respectability of the information to the clients. Client data put away at Cloud should be secured against potential gatecrashers just as a specialist organization. Because of the various potential assaults, there is a risk to the information at the cloud. The security of information concern is expanded for the majority of the organizations to ensure their touchy information at the cloud. Cryptography is an approach, which involves managing encryption and decryption keys. Customer should be guaranteed that their information is to be sheltered in the cloud. Each shopper needs to have authority over its information and its security. In this paper, we propose management of the key such that the data is secure at the cloud service provider and the key is recoverable in case of losing the key. So, the consumer is assured that even in the loss of the key, its data is recoverable. Here, we propose the Client based Key Management Framework to secure information in Cloud Storage utilizing Split Recoverable and symmetric AES Encryption Algorithm for Public SaaS. The trial examination demonstrates that the Client based KMS diminishes the time unpredictability of key age for both encryption and unscrambling subsequently it is effective when contrasted with existing frameworks.

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APA

Pradeep, K. V., & Vijayakumar, V. (2019). A proposed client based key management framework to secure information in cloud storage for public SaaS. International Journal of Recent Technology and Engineering, 8(1), 2148–2153.

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