Title of article :
An Elliptic Curve Based Schnorr Cloud Security Model in Distributed Environment
Author/Authors :
Muthurajan, Vinothkumar Department of CSE - University College of Engineering - Dindigul - Tamil Nadu 624622 - India , Narayanasamy, Balaji Department of Information Technology - KLN College of Engineering - Madurai - Tamil Nadu 630612 - India
Pages :
8
From page :
1
To page :
8
Abstract :
Cloud computing requires the security upgrade in data transmission approaches. In general, key-based encryption/decryption (symmetric and asymmetric) mechanisms ensure the secure data transfer between the devices. The symmetric key mechanisms (pseudorandom function) provide minimum protection level compared to asymmetric key (RSA, AES, and ECC) schemes. The presence of expired content and the irrelevant resources cause unauthorized data access adversely. This paper investigates how the integrity and secure data transfer are improved based on the Elliptic Curve based Schnorr scheme. This paper proposes a virtual machine based cloud model with Hybrid Cloud Security Algorithm (HCSA) to remove the expired content. The HCSAbased auditing improves the malicious activity prediction during the data transfer. The duplication in the cloud server degrades the performance of EC-Schnorr based encryption schemes. This paper utilizes the blooming filter concept to avoid the cloud server duplication. The combination of EC-Schnorr and blooming filter efficiently improves the security performance. The comparative analysis between proposed HCSA and the existing Distributed Hash Table (DHT) regarding execution time, computational overhead, and auditing time with auditing requests and servers confirms the effectiveness of HCSA in the cloud security model creation.
Keywords :
Elliptic Curve , Schnorr Cloud Security Model , Distributed Environment , Cloud computing requires , Hybrid Cloud Security Algorithm (HCSA)
Journal title :
The Scientific World Journal
Serial Year :
2016
Full Text URL :
Record number :
2611035
Link To Document :
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