全球移动通信系统短消息服务的安全框架

Aminu S. Ahmed, M. Lawal
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引用次数: 1

摘要

短信服务提升了我们的生活水平,是我们生活的主要方式。这项服务是由全球移动通信系统(GSM)驱动的,这是移动电话系统中最流行的标准。因此,GSM构成了短信服务(SMS)的适度执行,从而提高了移动电话的质量。正确理解SMS/MMS安全的基本要素可以防止一些常见的安全问题。它促进了对短信使用中一些常见威胁的预防。不幸的是,SMS没有任何内置的审查程序来验证文本或为数据/文本提供安全性,并且支持电话设施的设计没有考虑SMS/MMS安全方面。还有一个问题是移动应用程序开发人员和移动服务提供商不知道通信方的正确身份,以及在数据传输过程中几乎没有SMS/MMS内容的保密性和完整性的问题。本文旨在通过关注音频隐写的替代技术的使用来解决这些问题。我们通过对试图揭示隐藏信息的攻击具有较低的鲁棒性来实现我们的方法。这只允许加密的SMS,并且需要进一步研究多媒体消息的应用程序。此外,使用替代密码方法进行加密。并从移动安全需求和移动性能两方面分析了安全机制。基于移动安全需求和移动性能对安全机制进行了分析。经过详尽的计算机仿真,验证了所提方法的性能。结果表明,所获得的压缩比在0.1 ~ 0.5之间,是目前为止获得的最佳压缩比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Secured Framework for Short Messages Service in Global System for Mobile Communication
Short Message Service (SMS) has upgraded and elevated our lives and is principal in our livelihood. This service has been driven by the Global System for Mobile Communications (GSM) which is the most popular standard for mobile telephony systems. As a result, the GSM has constituted the moderate execution of short message service (SMS), which has uplifted mobile phone quality. A proper understanding of the essentials of SMS/MMS security opens the door to prevent some common security. which has fostered the prevention of some common threats in SMS usage. Unfortunately, the SMS does not has any built-in vetting procedure to authenticate the text or provide security for the data/text, and supportive phone facilities are designed without considering the SMS/MMS security aspects. There is also a problem of mobile applications developer and the mobile service providers not knowing the correct identities of the communicating parties, and also the problem of little to no SMS/MMS content confidentiality and integrity during data transmission. This paper is aimed at addressing these problems by focusing on the use of substitution techniques of audio steganography. We achieve our method by having a low robustness against attacks which try to reveal the hidden message. This allows only SMS that is encrypted, and application to multimedia messages needs to be further investigated. Furthermore, encryption is done using substitution cipher methods. We also analyze the security mechanism based on the mobile security requirements and mobile performance capability. Analysis of the security mechanism based on the mobile security requirements and mobile performance capability is carried out. After an exhaustive computer simulation, the performance of the proposed method is confirmed. The result obtained showed that compression ratio achieved is within the range of 0.1 and 0.5, the best achieved so far. 
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