改进密码算法的实现

Rohit Verma, Jyoti Dhiman
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引用次数: 1

摘要

网络是一组相互连接的独立计算设备,这些设备使用不同的协议集相互独立而有意义地进行通信。这种通信应该安全地进行。由于不同的攻击,这种安全性有时会受到损害。因此,为了安全通信,使用了不同的加密算法,即对称算法和非对称算法。密码学有助于实现数据的身份验证、机密性、完整性、不可否认性和可用性。目前,许多算法为数据提供了安全保障,但这些算法存在各种安全漏洞。为了提高这些算法的安全性,利用对称密钥和非对称密钥算法的特点,设计了一种新的安全协议。安全原理可通过AES和RSA算法实现。设计该算法的主要目的是为传输中的数据提供更好的安全性,使其免受被动攻击和主动攻击。在MATLAB R2019a中实现了该混合算法。本文将从雪崩效应、性能和抗攻击安全性三个方面对该算法进行分析和比较。拟议的模式将有助于提高教育工作者和学者的卓越水平,并提高欧盟国家类似机构中网络安全教育项目的竞争力。
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Implementation of Improved Cryptography Algorithm
A network is an interconnected group of independent computing devices which uses a different set of protocols to communicate with each other independently and meaningfully. This communication should be carried out securely. Due to different attacks, this security sometimes gets compromised. So, to communicate securely different cryptography algorithms are used i.e., symmetric and asymmetric algorithms. Cryptography helps to achieve authentication, confidentiality, integrity, non-repudiation, and availability of data. Nowadays many algorithms provide security to data but these algorithms have various security flaws. To improve the strength of these algorithms, a new security protocol is designed using features of symmetric key and asymmetric key algorithms. The security principles can be achieved by AES and RSA algorithms. The main purpose of designing this algorithm is to provide better security to data in transit against passive as well as from active attacks. The new proposed hybrid algorithm is implemented in MATLAB R2019a. This algorithm will be analysed and compared on three parameters like avalanche effect, performance, and security against attacks. The proposed model will contribute towards improving the excellence of educators and academics, as well as increase competitiveness of educational programmes on cybersecurity among similar institutions in the EU countries.
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