Adaptive-rate coding modulation system for digital image transmission

J. Kleider, G. Abousleman
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Abstract

Summary form only given. We propose two methods to provide optimal image quality at a fixed image delivery rate for any given transmission channel condition. The first method, channel-controlled variable-rate (CCVR) image coding, employs adaptive-rate source coding and channel coding, while operating with a fixed modulation symbol rate. The second method, adaptive-rate coding-modulation (ARCM), extends the CCVR system by utilizing adaptive modulation. Both methods use a variable-compression-ratio image coder and variable-rate channel coding. The objective is to maximize the quality of the reconstructed image at the receiver when transmitted through Rayleigh fading and additive white Gaussian noise (AWGN). The CCVR system maximizes the reconstructed image quality through a bit-rate trade-off between the source and channel coders. The ARCM method provides a trade-off between the rates of source and channel coding, and the modulation rate. Both methods require knowledge of the channel state which is used by the receiver to inform the transmitter, via a feedback channel, of the optimal strategy for image compression, channel coding, and modulation format. The resulting systems achieve up to a 17 dB improvement over the peak signal-to-noise ratio (PSNR) performance of a system using a fixed-compression-ratio image coder and fixed-rate channel coding. Reconstructed image quality is evaluated through both quantitative and subjective measures using peak signal-to-noise ratio and visual analysis, respectively.
数字图像传输的自适应速率编码调制系统
只提供摘要形式。我们提出了两种方法,在任何给定的传输信道条件下,在固定的图像传输速率下提供最佳的图像质量。第一种方法是信道控制可变速率(CCVR)图像编码,采用自适应速率源编码和信道编码,同时以固定的调制符号速率工作。第二种方法是自适应速率编码调制(ARCM),它利用自适应调制对CCVR系统进行扩展。这两种方法都使用可变压缩比图像编码器和可变速率信道编码。目标是在接收端通过瑞利衰落和加性高斯白噪声(AWGN)传输时最大限度地提高重构图像的质量。CCVR系统通过源和信道编码器之间的比特率权衡,最大限度地提高了重建图像的质量。ARCM方法提供了源和信道编码速率和调制速率之间的权衡。这两种方法都需要信道状态的知识,接收端通过反馈信道将图像压缩、信道编码和调制格式的最佳策略通知发送端。与使用固定压缩比图像编码器和固定速率信道编码的系统相比,该系统的峰值信噪比(PSNR)性能提高了17db。重建图像质量分别通过峰值信噪比和视觉分析两种定量和主观测量方法进行评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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