Performance Analysis of Hybrid Cryptography System for High Security and Cloud-Based Storage

R. Bhagyalakshmi, Roopashree D., S. K. N.
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引用次数: 1

Abstract

Now a day, the security of the data is playing a major part in communication systems due to further bushwhackers between channels media. The security position depends on cache crucial and as per literature, advanced the bit size of the key, advanced the security and also larger data size comes major challenge task for the further process. Thus, the generation of crucial with the further size is a major grueling task and at present, the Advanced Encryption Standard (AES) is a better cryptography system where the encryption and decryption can perform with a fixed key. The literature says the holomorphic function is well-suitable for data size reduction. To address this issue, new Holomorphic grounded encryption and decryption and AES are combined to increase the security position. The alternate novelty is that variable crucial generation using Elliptic Wind Cryptography (ECC) due to its enlarged proportion of consideration in assiduity and experimenters. The ECC uses point addition and point doubling to induce 256 values and addition operations can be avoided. After the generation of the matrix, each matrix value is translated and decrypted using a Holomorphic algorithm. The proposed work has been designed using MATLAB 2017a, dissembled, and validated with different datasets in real decors. Cloud computing is expected to be considered one of the primary computing platforms in the field of storage and security as it possesses many advantages such as profitability, efficiency as well as lower implementation overheads. Contemporary cloud computing security algorithms are enhanced extensions of cryptography. Data privacy, as well as data protection, are the major areas of concern in Cloud computing. The cryptographic with holomorphic based data encryption and interchange of information is exchanged and then accumulated in the cloud through holomorphic encryption which uses point addition and doubling operation to ensure data confidentiality of owners as well as users. Proposed work novel hybrid algorithm based on the context of encryption and decryption and thus integrates cryptography hybrid techniques include modified 126-bit AES and ElGamal based ECC through splitting algorithm. The advantage of splitting the larger data in size into binary form and then processing for encryption and decryption leads to optimization of latency, increase throughput, and security. The proposed hybrid approach has better security towards information sharing as well as cloud storage intrusions. Based on obtained results in MATLAB 2017a software tool, the obtained results show that 43% improvement in throughput and 12% reduction in latency, and a 21% improvement in security level.
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用于高安全性和云存储的混合密码系统的性能分析
如今,由于渠道和媒体之间的进一步丛林破坏,数据的安全性在通信系统中发挥着重要作用。安全位置取决于缓存至关重要,根据文献,提高密钥的比特大小、提高安全性以及更大的数据大小是进一步处理的主要挑战任务。因此,生成更大尺寸的密钥是一项艰巨的任务,目前,高级加密标准(AES)是一种更好的加密系统,其中加密和解密可以用固定密钥执行。文献表明,全纯函数非常适合于数据大小的缩减。为了解决这个问题,将新的全纯接地加密和解密与AES相结合,以提高安全地位。另一个新颖之处是使用椭圆风密码(ECC)的变量关键生成,因为它在助手和实验者中的考虑比例增加了。ECC使用点相加和点加倍来诱导256个值,并且可以避免相加操作。在生成矩阵之后,使用全纯算法对每个矩阵值进行转换和解密。所提出的工作是使用MATLAB 2017a进行设计的,并在实际decos中用不同的数据集进行了分解和验证。云计算有望被视为存储和安全领域的主要计算平台之一,因为它具有许多优势,如盈利能力、效率以及较低的实施开销。当代云计算安全算法是密码学的增强扩展。数据隐私和数据保护是云计算中关注的主要领域。基于全纯数据加密和信息交换的密码通过全纯加密进行交换,然后在云中积累,全纯加密使用点加法和加倍运算来确保所有者和用户的数据机密性。提出了一种基于加密和解密上下文的新型混合算法,从而集成了密码学混合技术,包括改进的126位AES和基于ElGamal的ECC通过分裂算法。将大小较大的数据拆分为二进制形式,然后进行加密和解密处理的优点是优化了延迟、提高了吞吐量和安全性。所提出的混合方法在信息共享和云存储入侵方面具有更好的安全性。基于在MATLAB 2017a软件工具中获得的结果,获得的结果显示吞吐量提高了43%,延迟减少了12%,安全级别提高了21%。
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来源期刊
WSEAS Transactions on Power Systems
WSEAS Transactions on Power Systems Engineering-Industrial and Manufacturing Engineering
CiteScore
1.10
自引率
0.00%
发文量
36
期刊介绍: WSEAS Transactions on Power Systems publishes original research papers relating to electric power and energy. We aim to bring important work to a wide international audience and therefore only publish papers of exceptional scientific value that advance our understanding of these particular areas. The research presented must transcend the limits of case studies, while both experimental and theoretical studies are accepted. It is a multi-disciplinary journal and therefore its content mirrors the diverse interests and approaches of scholars involved with generation, transmission & distribution planning, alternative energy systems, power market, switching and related areas. We also welcome scholarly contributions from officials with government agencies, international agencies, and non-governmental organizations.
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