基于线性反馈移位寄存器(LFSR)的无人机低成本模拟视频传输安全

R. Mardiyanto, H. Suryoatmojo, F. Setiawan, A. N. Irfansyah
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引用次数: 0

摘要

由于无人机广泛用于军事目的,以保护机密信息不被未经授权的人获取,因此无人机视频传输的安全性受到关注。由于无人机劫持事件频繁发生,信息的保密性变得非常重要。采用伪随机数发生器和线性反馈移位寄存器算法组合随机图像块,实现了无人机模拟视频传输的加密安全。这种安全性的要点是LFSR用作种子,它像钥匙一样设置随机化模式,从相机捕获的图像中设置随机化模式,并由安装在无人机上的树莓派软件处理。随机图像通过模拟视频发射机发送。解密是在地面站完成的。使用视频接收器接收的图像结果使用配备视频采集器的树莓派进行解密。在实验中,我们比较了原始图像、加密图像和解密图像之间的相似度。原始图像和加密图像之间的相似性为3.94%,原始图像和解密图像之间的相似性为98.24%,延迟为2.2秒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low Cost Analog Video Transmission Security of Unmanned Aerial Vehicle (UAV) based on Linear Feedback Shift Register (LFSR)
The security of video transmission in Unmanned Aerial Vehicle (UAV) become noteworthy since the UAV broadly used for military purposes to protect confidential information from unauthorized person. The confidentiality of information becomes an important thing because UAV hijacking occurs quite frequently. We develop an analog video transmission security for UAV with image encryption process by using Pseudo-Random Number Generator and assembling random image pieces with Linear Feedback Shift Register algorithm. The points to this security are the LFSR used as a seed that acts like a key to set the pattern of randomization from the images captured by the camera and processed by software on Raspberry Pi which is all mounted on UAV. The randomized image is sent using Analog Video Transmitter. The decryption is done on the ground station. The image result that received using a video receiver is decrypted using Raspberry Pi equipped with video grabber. In the experiment, we compared the similarity level between the original, scrambled, and decrypted images. It has 3.94 Percent similarity between original and scrambled images, 98.24 Percent similarity between original and decrypted images, and has 2.2 seconds latency.
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