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Network Coding and Signcryption for Cloud Data Integrity
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- FormatePub
- ISBN8227388162
- EAN9798227388162
- Date de parution06/06/2024
- Protection num.pas de protection
- Infos supplémentairesepub
- ÉditeurBig Dog Books, LLC
Résumé
The advent of cloud computing has revolutionized the way data is stored, processed, and shared. However, the security of cloud data remains a major concern due to the inherent vulnerabilities in cloud architecture. The paper "Network Coding and Signcryption for Cloud Data Integrity" authored by V. Balasubramanian explores the use of network coding and signcryption techniques to ensure the integrity of cloud data.
Network coding is a technique that enables efficient data transmission and error correction in networks. Signcryption, on the other hand, is a cryptographic technique that combines digital signature and encryption to provide data integrity, confidentiality, and authentication. The paper proposes the use of these two techniques together to provide a comprehensive solution for cloud data integrity. The paper discusses the theoretical foundations of network coding and signcryption and their application in cloud computing.
It also discusses the advantages of using network coding and signcryption over traditional cryptographic techniques such as symmetric and asymmetric encryption. The paper provides a detailed analysis of the computational complexity, efficiency, and resource utilization of the proposed technique. The paper also discusses various aspects of cloud security such as data protection, data privacy, data confidentiality, and access control.
It proposes the use of random number generation, key generation, and key management techniques to ensure the security of cloud data. The paper also discusses the issues of data transmission, storage, retrieval, sharing, backup, redundancy, fault tolerance, recovery time, service availability, quality of service, reliability, and scalability in cloud computing. In conclusion, the paper "Network Coding and Signcryption for Cloud Data Integrity" provides a comprehensive solution for ensuring the integrity of cloud data.
It proposes the use of network coding and signcryption techniques to provide data security, error correction, and information theory-based encryption. The proposed technique offers a high level of security, efficiency, and scalability and can be used in various applications of cloud computing.
Network coding is a technique that enables efficient data transmission and error correction in networks. Signcryption, on the other hand, is a cryptographic technique that combines digital signature and encryption to provide data integrity, confidentiality, and authentication. The paper proposes the use of these two techniques together to provide a comprehensive solution for cloud data integrity. The paper discusses the theoretical foundations of network coding and signcryption and their application in cloud computing.
It also discusses the advantages of using network coding and signcryption over traditional cryptographic techniques such as symmetric and asymmetric encryption. The paper provides a detailed analysis of the computational complexity, efficiency, and resource utilization of the proposed technique. The paper also discusses various aspects of cloud security such as data protection, data privacy, data confidentiality, and access control.
It proposes the use of random number generation, key generation, and key management techniques to ensure the security of cloud data. The paper also discusses the issues of data transmission, storage, retrieval, sharing, backup, redundancy, fault tolerance, recovery time, service availability, quality of service, reliability, and scalability in cloud computing. In conclusion, the paper "Network Coding and Signcryption for Cloud Data Integrity" provides a comprehensive solution for ensuring the integrity of cloud data.
It proposes the use of network coding and signcryption techniques to provide data security, error correction, and information theory-based encryption. The proposed technique offers a high level of security, efficiency, and scalability and can be used in various applications of cloud computing.



