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Parallel non-dominated sorting genetic algorithm-Ⅱ-based image encryption technique

机译:基于并行非支配排序遗传算法Ⅱ的图像加密技术

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摘要

Chaotic system requires parameters to generate random sequences. Recent studies show that the improper selection of parameter values make secret keys generated from chaotic system vulnerable. Meta-heuristic techniques have been introduced in the area of image encryption to improve the selection of chaotic system parameters. But, these techniques suffer from poor computational speed. To overcome this issue, in this paper, a parallel Non-Dominated Sorting Genetic Algorithm (NSGA-II)-based intertwining logistic map is proposed to encrypt the images. To implement NSGA-II in parallel fashion, master-slave environment is designed. Initially, the execution time analysis of NSGA-II is done to determine the computationally expensive operations. Thereafter, NSGA-II operators are divided into master and slave jobs. The Message Passing Interface (MPI) is used for intercommunication between master and slave nodes. The simulation results show that the parallel proposed technique provides a significant improvement in computational speed as compared to the existing techniques.
机译:混沌系统需要参数来生成随机序列。最近的研究表明,对参数值的选择不当会使从混沌系统生成的秘密密钥易受攻击。在图像加密领域中已经引入了元启发式技术,以改善混沌系统参数的选择。但是,这些技术具有较差的计算速度。为了克服这个问题,本文提出了一种基于并行非支配排序遗传算法(NSGA-II)的交织逻辑图来对图像进行加密。为了以并行方式实现NSGA-II,设计了主从环境。最初,完成NSGA-II的执行时间分析,以确定计算量大的操作。此后,NSGA-II操作员分为主作业和从作业。消息传递接口(MPI)用于主节点和从节点之间的相互通信。仿真结果表明,与现有技术相比,并行提出的技术显着提高了计算速度。

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