实时通信系统中1024位对称加解密算法的高效实现

A. Ishfaq, T. Naqash, M. A. Hasan, A. Mukhtar, M. A. Ashraf Ch, U. Mujahid, M. Najam-ul-Islam
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引用次数: 0

摘要

十多年来,我们的通信安全需求呈指数级增长。政府、半政府机构、国内和国际公司的首要任务是保护他们的无线通信。因此,工程师们设计了数百种算法来实现安全通信,就像2001年美国国家标准与技术研究所(NIST)批准的Rijndael算法(AES)一样。因此,安全是安全算法设计者和攻击者之间永无休止的战斗。但是AES不能满足实时通信的要求。本文提出了一种工作在1024位数据下的对称加密算法,通过该方案可以实现低资源消耗、高速度、低功耗和高性价比的硬件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient implementation of 1024-bit symmetric encryption and decryption algorithm for real time communication systems
Over a decade of era our communication security demands are increasing exponentially. Government, semi-government agencies, national and international companies have their first priority on sheltering their wireless communication. Thus engineers have designed more than hundred's of algorithms for making the secure communication, just like Rijndael algorithm (AES) which was approved by US National Institute Standards and Technology (NIST) in 2001. So security is a never ending battle between the security algorithm designers and attackers. However AES cannot meet the requirements for real time communication. In this paper we have proposed a symmetric encryption algorithm operating at 1024-bits of data, through this scheme we can have lower resource consumption, high speed, low power and cost effective hardware.
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