使用通用软件无线电外围设备实现实时数据传输的安全波形的软件定义无线电实现

IF 1.5 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS
H. Benimam, S. Sadoudi, Djamal Teguig
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引用次数: 0

摘要

在目前的工作中,我们提出了一种在基于软件定义无线电(SDR)的通信系统中保护数据传输波形的新方法。为了更精确,SDR的实现和验证,使用通用软件无线电外设(usrp) B210平台,基于混沌的密码系统用于保护传输的多媒体数据,如文本,图像和视频。为此,我们开发了新的GNU - radio companion (GRC)模块,并将其集成到GRC软件环境中,以有效地使用我们的解决方案。在这种情况下,我们为产生混沌信号的洛伦兹混沌发生器集成了GRC块。然后这些信号被用来通过插入一个专用的GRC块来生成加密密钥。最新和最大的发展GRC块关注的是混沌同步问题的解决方案,这是将混沌系统应用于数据安全传输时所面临的挑战。所实现的混沌密码系统是基于一次填充密码的,知道它是最适合混沌密码的。所得到的安全分析结果验证了该密码系统的鲁棒性。实际上,生成的加密密钥在通过NIST和DIEHARD两组统计测试后被认为是健壮的。此外,通过多个指标对加密后的数据进行了大量的安全性评估,获得了较好的结果,并与前人的研究成果进行了比较。最后,我们通过实验验证了两个usrp平台之间针对不同类型的数据信息(如文本、图像和视频)的安全波形。此外,还设计了图形通信接口,以保证开发的解决方案易于访问和广泛灵活的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Software defined radio implementation of a secure waveform for real‐time data transmission using universal software radio peripheral
In the present work, we propose a new approach to secure waveforms for data transmission in software defined radio (SDR) based communication systems. For more precision, SDR implementation and validation, using Universal software radio peripherals (USRPs) B210 platforms, of a chaos‐based cryptosystem is used for securing transmitted multimedia data such as text, image, and video. For this, new GNU‐radio companion (GRC) blocks are developed and integrated in the GRC software environment to use effectively our solution. In this context, we have integrated GRC block for the Lorenz chaotic generator which generates chaotic signals. These signals are then used to generate the encryption keys by inserting a dedicated GRC block. The latest and largest development GRC block concerns the proposed solution for the chaotic synchronization problem, which is a challenge when applying chaotic systems to secure data transmission. The implemented chaotic cryptosystem is based on one time pad cipher, knowing that it's the most suitable for chaos‐based cryptography. The obtained results of the security analysis of the proposed cryptosystem validate its robustness. In fact, the generated encryption keys deemed robust after passing through two statistical tests batteries namely, NIST and DIEHARD. In addition, a good result is obtained by a large security evaluation of the encrypted data through several metrics, which are compared to some previous works. Finally, we have experimentally validated a secure waveform between two USRPs platforms for different types of data information like text, image, and video. Furthermore, a graphical communication interface is designed to guarantee easy access and broad flexible applicability of the developed solution.
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