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Information hiding in edges: A high capacity information hiding technique using hybrid edge detection

机译:信息隐藏在边缘:使用混合边缘检测的高容量信息隐藏技术

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The multimedia security is becoming more and more important as the data being exchanged on the Internet is increasing exponentially. Though cryptography is one of the methods which is used to secure the data during transit, but the camouflaged appearance of the scrambled data alerts the adversary about some critical information being shared. In such a scenario, steganography has been used as an alternate solution to secure the secret information. In this paper a color image steganographic algorithm based on hybrid edge detection is proposed. The color image is partitioned into constituent Red (R), Green (G) and Blue (B) planes. Hybrid edge detection is used for finding the edge and non-edge pixels of Green and Blue planes of cover image. The Green and Blue planes are used for hiding the data while Red plane holds the pixel status (whether edge or non-edge) of these planes. The RC4 encryption algorithm is used to encrypt secret message before embedding it in the cover image to enhance security of the secret data. A fragile watermark/logo (whose size is less than 1% of total secret data) has been embedded, besides secret data in the cover image, to facilitate content authentication and early tamper detection. At the receiver, firstly logo is extracted. If it is same as one embedded at transmitter, indicating that secret data has not been altered during transit, secret data is extracted. Otherwise (if extracted logo is not same as used at input) the receiver does not waste critical time to extract compromised data but sends an automatic retransmission request. Experimental investigations reveal that the proposed scheme is capable of providing high quality of stego-images for a fairly high pay load. A comparison of the proposed technique with some state of art schemes substantiates the above arguments.
机译:随着Internet上交换的数据呈指数增长,多媒体安全性变得越来越重要。尽管加密是在传输过程中用于保护数据的方法之一,但是加密数据的伪装外观警告了对手一些共享的关键信息。在这种情况下,隐写术已被用作保护机密信息的替代解决方案。提出了一种基于混合边缘检测的彩色图像隐写算法。彩色图像分为红色(R),绿色(G)和蓝色(B)平面。混合边缘检测用于查找封面图像的绿色和蓝色平面的边缘和非边缘像素。绿色和蓝色平面用于隐藏数据,而红色平面用于保持这些平面的像素状态(无论是边缘还是非边缘)。 RC4加密算法用于在将秘密消息嵌入封面图像之前对其进行加密,以增强秘密数据的安全性。除封面图像中的秘密数据外,还嵌入了脆弱的水印/徽标(其大小小于总秘密数据的1%),以便于内容认证和早期篡改检测。在接收方,首先提取徽标。如果它与发送器上嵌入的相同,则表明在传输过程中机密数据未更改,则将提取机密数据。否则(如果提取的徽标与输入中使用的徽标不同),接收方不会浪费关键时间来提取泄露的数据,而是发送自动重传请求。实验研究表明,所提出的方案能够在相当高的有效载荷下提供高质量的隐身图像。所提出的技术与一些现有技术方案的比较证实了以上观点。

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