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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >A Low-Complexity UEP Methodology Demonstrated on a Turbo-Encoded Wavelet Image Satellite Downlink
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A Low-Complexity UEP Methodology Demonstrated on a Turbo-Encoded Wavelet Image Satellite Downlink

机译:Turbo编码小波图像卫星下行链路上演示的低复杂度UEP方法

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摘要

Realizing high-quality digital image transmission via a satellite link, while optimizing resource distribution and minimizing battery consumption, is a challenging task. This paper describes a methodology to optimize a turbo-encoded wavelet-based satellite downlink progressive image transmission system with unequal error protection (UEP) techniques. To achieve that goal, we instantiate a generic UEP methodology onto the system, and demonstrate that the proposed solution has little impact on the average performance, while greatly reducing the run-time complexity. Based on a simple design-time distortion model and a low-complexity run-time algorithm, the provided solution can dynamically tune the system's configuration to any bitrate constraint or channel condition. The resulting system outperforms in terms of peak signal-to-noise ratio (PSNR), a state-of-the-art, fine-tuned equal error protection (EEP) solution by as much as 2 dB.
机译:在优化资源分配和最小化电池消耗的同时,通过卫星链路实现高质量的数字图像传输是一项艰巨的任务。本文介绍了一种使用不等差错保护(UEP)技术优化基于Turbo编码的基于小波的卫星下行链路渐进图像传输系统的方法。为了实现该目标,我们在系统上实例化了通用UEP方法,并证明了所提出的解决方案对平均性能几乎没有影响,同时大大降低了运行时的复杂性。基于简单的设计时失真模型和低复杂度的运行时算法,所提供的解决方案可以将系统配置动态调整为任何比特率约束或信道条件。最终的系统在峰值信噪比(PSNR)(最先进的微调均等错误保护(EEP)解决方案)方面的性能高达2 dB。

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