An efficient algorithm for text encryption on android devices

Williams, J., B. E. O., Anireh V.I.E
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Abstract

In the era of digital communication, ensuring the confidentiality and integrity of sensitive information is paramount. This dissertation introduces a robust text encryption system that combines the strengths of Advanced Encryption Standard (AES) and Rivest-Shamir-Adleman (RSA) algorithms to create a hybrid encryption approach. Object Oriented Design (OOD) was used for the design methodology. The proposed system leverages the efficiency of AES for symmetric key encryption and the security benefits of RSA for key exchange and digital signatures. The encryption process begins with the generation of a random symmetric key for each communication session, which is then used for the AES encryption of the plaintext. The symmetric key is subsequently encrypted using the recipient's RSA public key, ensuring secure key exchange. This hybrid approach harnesses the speed of AES for bulk data encryption while utilizing RSA's asymmetric encryption for the secure sharing of secret keys. The system incorporates digital signatures generated using RSA to authenticate the sender and verify the integrity of the encrypted message. This dual-layered encryption strategy not only safeguards the confidentiality of the message but also provides assurance of the message origin and integrity. The implementation of this hybrid AES-RSA encryption system using Python programming language offers a versatile solution suitable for diverse communication channels, including email, messaging platforms, and file transfers. Its robustness against common cryptographic attacks makes it an ideal choice for securing sensitive information in various applications, such as financial transactions, healthcare communication, and government data exchange. The experimental results demonstrate the efficacy of the proposed system, with significantly reduced encryption and decryption times—0.5005 seconds and 0.5003 seconds, respectively—when compared to existing systems. This noteworthy improvement in processing speed enhances the system's practical applicability for real-time communication scenarios.
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安卓设备上文本加密的高效算法
在数字通信时代,确保敏感信息的机密性和完整性至关重要。本论文介绍了一种强大的文本加密系统,该系统结合了高级加密标准(AES)和 Rivest-Shamir-Adleman (RSA)算法的优势,创建了一种混合加密方法。设计方法采用了面向对象设计(OOD)。提议的系统利用 AES 的效率进行对称密钥加密,并利用 RSA 的安全优势进行密钥交换和数字签名。加密过程首先是为每个通信会话生成一个随机对称密钥,然后用它对明文进行 AES 加密。对称密钥随后使用接收方的 RSA 公钥进行加密,确保密钥交换安全。这种混合方法利用 AES 的速度进行批量数据加密,同时利用 RSA 的非对称加密技术安全共享密钥。该系统结合使用 RSA 生成的数字签名来验证发送者的身份和加密信息的完整性。这种双层加密策略不仅能保护信息的机密性,还能保证信息的来源和完整性。使用 Python 编程语言实现这种混合 AES-RSA 加密系统提供了一种多功能解决方案,适用于各种通信渠道,包括电子邮件、信息平台和文件传输。该系统对常见加密攻击的鲁棒性使其成为金融交易、医疗保健通信和政府数据交换等各种应用中保护敏感信息安全的理想选择。实验结果证明了所提系统的功效,与现有系统相比,加密和解密时间分别大幅缩短了 0.5005 秒和 0.5003 秒。处理速度的显著提高增强了系统在实时通信场景中的实用性。
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