Efficient speech encryption algorithm based on three-dimensional quadratic exponential robust chaos

IF 3.4 2区 物理与天体物理 Q1 ACOUSTICS
Yibo Huang , Chong Li , Zhiyong Li , Qiuyu Zhang
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引用次数: 0

Abstract

The computational accuracy and parameter spacing of the existing chaos result in the gradual degradation of the chaos, which makes the sequence become periodic sequence, and the divergence rate and divergence index of the existing chaos are low. In addition, the current speech encryption algorithm has high complexity and low computational efficiency. To solve these problems, a three-dimensional quadratic exponential chaos is proposed and an efficient speech encryption algorithm is designed. To solve the problem of slow numerical divergence, the double exponential nesting structure is used and the expansion factor beta is introduced to effectively reduce the number of iterations when complete chaos is reached. In order to improve the internal complexity of chaotic sequence, the whole chaotic equation is standardized, so that the generated chaotic sequence has a wide distribution. Considering that the algorithm can be stably deployed in the hardware chip in the future, and take into account the encryption rate. In this paper, the speech encryption algorithm adopts the parallel processing of confusion and diffusion, and makes the residual processing of the generated encrypted speech to improve the scrambling effect and encryption efficiency. Simulation results show that the proposed chaos equation achieves remarkable exponential divergence rate, robustness and hardware deployability. The proposed speech encryption algorithm has high efficiency, low complexity, high noise ratio, can resist a series of attacks, and has high security. This paper presents an efficient encryption strategy for speech encryption.
基于三维二次指数鲁棒混沌的高效语音加密算法
现有混沌的计算精度和参数间距导致混沌逐渐退化,使序列成为周期序列,现有混沌的散度率和散度指数较低。此外,目前的语音加密算法存在复杂度高、计算效率低的问题。为了解决这些问题,提出了一种三维二次指数混沌,并设计了一种高效的语音加密算法。为了解决数值发散缓慢的问题,采用了双指数嵌套结构,并引入了扩展因子β,有效地减少了达到完全混沌时的迭代次数。为了提高混沌序列的内部复杂度,对整个混沌方程进行了标准化处理,使生成的混沌序列具有广泛的分布。考虑到该算法可以在未来稳定地部署在硬件芯片上,并且考虑到加密速率。本文的语音加密算法采用混淆和扩散并行处理,并对生成的加密语音进行残差处理,提高置乱效果和加密效率。仿真结果表明,该混沌方程具有显著的指数发散率、鲁棒性和硬件可部署性。所提出的语音加密算法具有效率高、复杂度低、噪声比高、能抵抗一系列攻击、安全性高等特点。本文提出了一种高效的语音加密策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied Acoustics
Applied Acoustics 物理-声学
CiteScore
7.40
自引率
11.80%
发文量
618
审稿时长
7.5 months
期刊介绍: Since its launch in 1968, Applied Acoustics has been publishing high quality research papers providing state-of-the-art coverage of research findings for engineers and scientists involved in applications of acoustics in the widest sense. Applied Acoustics looks not only at recent developments in the understanding of acoustics but also at ways of exploiting that understanding. The Journal aims to encourage the exchange of practical experience through publication and in so doing creates a fund of technological information that can be used for solving related problems. The presentation of information in graphical or tabular form is especially encouraged. If a report of a mathematical development is a necessary part of a paper it is important to ensure that it is there only as an integral part of a practical solution to a problem and is supported by data. Applied Acoustics encourages the exchange of practical experience in the following ways: • Complete Papers • Short Technical Notes • Review Articles; and thereby provides a wealth of technological information that can be used to solve related problems. Manuscripts that address all fields of applications of acoustics ranging from medicine and NDT to the environment and buildings are welcome.
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