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首页> 外文期刊>Indian Journal of Science and Technology >Combining Audio Samples and Image Frames for Enhancing Video Security
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Combining Audio Samples and Image Frames for Enhancing Video Security

机译:结合音频样本和图像帧以增强视频安全性

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摘要

Advances in the digital content transmission have increased exponentially in the past few years. In addition, the video encryption plays an important role in guaranteeing data transmission security, this role is increasing continuously due to its involvement with the development of multimedia technology. In this paper, we propose applicable and secure video encryption algorithm. The proposed algorithm is mainly based on the symmetric key cryptographic technique, and it employs the audio sample to eliminate the need for trusted third party for key exchange process. The new algorithm starts working by splitting the undertaken video into audio samples and video frames. Next, the audio sample is used to generate the public key. The yielded audio sample and video frame are then encrypted along with the generated public key to produce the cipher data. The public key is then added to the cipher data randomly. The receiver on other side will extract firstly the public key from cipher data, and then complete the decryption process. Based on the results, and comparing with the existing encryption algorithms, the presented algorithm is able to maximize the tolerance skew value to be close to the optimal value. Moreover, the results showed that the proposed algorithm is efficient, and give high performance. The performance is measured by means of parameters such as Peak Signal to Noise Ratio (PSNR) and Mean Squared Error (MSE). The resulted MES values are close to zero, and the resulted values for the PSNR are between 30 and 58 dB, and those values proved the effectiveness of the proposed algorithm.
机译:在过去的几年中,数字内容传输的进步成倍增加。此外,视频加密在保证数据传输安全性方面也起着重要作用,由于其参与了多媒体技术的发展,因此这种作用正在不断增加。在本文中,我们提出了适用且安全的视频加密算法。所提出的算法主要基于对称密钥加密技术,并使用音频样本消除了对可信第三方进行密钥交换过程的需要。通过将所拍摄的视频分为音频样本和视频帧,新算法开始工作。接下来,音频样本用于生成公共密钥。然后,将产生的音频样本和视频帧与生成的公共密钥一起加密,以生成密码数据。然后将公钥随机添加到密码数据中。另一端的接收者将首先从密码数据中提取公钥,然后完成解密过程。基于结果,并与现有加密算法进行比较,提出的算法能够最大程度地提高容差偏斜值,使其接近最佳值。此外,结果表明该算法是有效的,并且具有较高的性能。通过诸如峰值信噪比(PSNR)和均方误差(MSE)之类的参数来测量性能。所得的MES值接近于零,PSNR的所得值在30到58 dB之间,这些值证明了所提算法的有效性。

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