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Randomness improvement of chaotic maps for image encryption in a wireless communication scheme using PIC-microcontroller via Zigbee channels

机译:通过ZigBee频道使用PIG-Troller在无线通信方案中进行图像加密混沌映射的随机性改进

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Recently, a lot of research has been done in chaotic cryptography field using different kinds of chaotic systems, like chaotic maps, which are being considered as one of the secure and efficient methods to protect confidential information. This article highlights that the main cryptography requirements demand that the new embedded cryptosystems have to be more efficient and secure, it means that they must be faster and offer greater security. For instance, the new cryptosystems require to be compatible with the new telecommunication protocols and, in addition, to be efficient in energy consumption. In this manner, this article introduces a process to improve the randomness of five chaotic maps that are implemented on a PIC-microcontroller. The improved chaotic maps are tested to encrypt digital images in a wireless communication scheme, particularly on a machine-to-machine (M2M) link, via ZigBee channels. We show that function mod 255 improves the randomness of the pseudo-random number generators (PRNG), which is verified performing NIST SP 800-22 statistical tests, histograms, phase-plane analysis, entropy, correlation of adjacent pixels, differential attacks, and using digital images of size 256 x 256 and 512 x 512 pixels. A comparative analysis is presented versus related works that also use chaotic encryption and classic algorithms, such as: AES, DES, 3DES and IDEA. The security analysis confirms that the proposed process to improve the randomness of chaotic maps, is appropriate to implement an encryption scheme that is secure and robust against several known attacks and other statistical tests. Finally, it was experimentally verified that this chaotic encryption scheme can be used in practical applications such as M2M and Internet of things (IoT). (C) 2020 Elsevier Ltd. All rights reserved.
机译:最近,使用不同种类的混沌系统的混沌密码场进行了大量研究,如混沌映射,被认为是保护机密信息的安全有效的方法之一。本文突出显示,主要的加密需求要求新的嵌入式密码系统必须更高效和安全,这意味着它们必须更快,并提供更大的安全性。例如,新密码系统需要与新电信协议兼容,并且此外,还可以在能耗中高效。以这种方式,本文介绍了改进在PIC-微控制器上实现的五个混沌映射的随机性的过程。测试改进的混沌映射以通过ZigBee信道在无线通信方案中加密数字图像,特别是在机器到机器(M2M)链路上。我们表明,函数Mod 255改善了伪随机数发生器(PRNG)的随机性,其验证了执行NIST SP 800-22统计测试,直方图,相平面分析,熵,相邻像素的相关性,差异攻击和使用大小256 x 256和512 x 512像素的数字图像。呈现比较分析与相关的作品也使用混沌加密和经典算法,例如:AES,DES,3DES和IDEA。安全分析证实,提出了改进混沌映射随机性的过程,适用于实现对若干已知攻击和其他统计测试的安全和坚固的加密方案。最后,实验验证了这种混沌加密方案可用于实际应用,例如M2M和物联网(物联网)。 (c)2020 elestvier有限公司保留所有权利。

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