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Design and Hardware Implementation of A Separable Image Steganographic Scheme using Public-key Cryptosystem

机译:使用公钥密码系统的可分离图像隐识别方案的设计和硬件实现

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In this paper, a novel and efficient hardware implementation of steganographic cryptosystem based on a public-key cryptography is proposed. Digital images are utilized as carriers of secret data between sender and receiver parties in the communication channel. The proposed public-key cryptosystem offers a separable framework that allows to embed or extract secret data and encrypt or decrypt the carrier using the public-private key pair, independently. Paillier cryptographic system is adopted to encrypt and decrypt pixels of the digital image. To achieve efficiency, a proposed efficient parallel montgomery exponentiation core is designed and implemented for performing the underlying field operations in the Paillier cryptosystem. The hardware implementation results of the proposed steganographic cryptosystem show an efficiency in terms of area (resources), performance (speed) and power consumption. Our steganographic cryptosystem represents a small footprint making it well-suited for the embedded systems and real-time processing engines in applications such as medical scanning devices, autopilot cars and drones.
机译:在本文中,提出了一种基于公钥密码学的隐写密码系统的新颖和有效的硬件实现。数字图像用作通信信道中的发送器和接收方之间的秘密数据的载波。所提出的公钥密码系统提供可分离的框架,允许使用公钥密钥对,允许嵌入或提取秘密数据并加密或解密载波的载波。采用Paillier加密系统加密和解密数字图像的像素。为了实现效率,设计并实施了一个提出的高效平行蒙哥拉姆指数核心,用于在Paillier密码系统中执行潜在的现场操作。所提出的隐写密码系统的硬件实现结果表明了面积(资源),性能(速度)和功耗方面的效率。我们的隐秘密码系统代表了一个小型占用空间,使其适用于嵌入式系统和实时处理发动机,如医疗扫描设备,自动驾驶仪汽车和无人机。

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