Modern Cryptographic Frameworks in Cloud Environments for Enhancing Mobile Data Security

Authors

  • DINESH KUMAR REDDY BASANI Author
  • BASAVA RAMANJANEYULU GUDIVAKA Author

Keywords:

cloud computing, data encryption, cryptography, mobile security, and access control.

Abstract

Background Details: Ensuring mobile data security has become much more difficult due to the 
quick uptake of cloud environments and mobile technologies. In order to secure sensitive data in 
mobile-cloud ecosystems, modern cryptographic frameworks use scalable designs and 
sophisticated encryption techniques to handle issues including unauthorized access, data breaches, 
and privacy concerns. 
Objectives: The purpose of this study is to assess contemporary cryptographic frameworks for 
protecting mobile data in cloud environments (40 words). It investigates how well they protect 
privacy, confidentiality, and integrity while weighing performance trade-offs to find the best ways 
to improve data security in dynamic cloud environments 
Methods: Cryptographic techniques like secure key management, attribute-based encryption, and 
homomorphic encryption are compared. Through case studies and experimental implementations, 
cloud-based frameworks are assessed for security, scalability, and performance, emphasizing 
issues and practical implications. 
Empirical Results: By facilitating secure computation and effective access management, 
respectively, attribute-based encryption and homomorphic encryption greatly improve mobile data 
security, according to the analysis. For both small- and enterprise-level cloud apps, empirical data 
show enhanced security metrics with negligible performance trade-offs.Conclusion (40 words): A strong basis for mobile data security in cloud contexts is offered by 
contemporary cryptographic frameworks. They enable enterprises to successfully embrace cloud 
technologies by tackling new threats and guaranteeing data confidentiality, striking a balance 
between security, performance, and scalability. 

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Published

2026-06-08