IEEE 802.22干扰下ISDB-T传输的随机Intra Refresh实现

Ralph Michael Gabriel D. Alfonso, Gianka M. Bautista, Paula Gonzales, Tim Patrick B. Nieves, Nicole Bianca B. Pol, Kanny Krizzy D. Serrano, Angelo R. dela Cruz
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引用次数: 0

摘要

视频压缩是必要的,当符合有限的带宽和存储空间。它执行内部预测,其中它消除了相邻帧之间的时间冗余,从而实现更高的压缩率。然而,一旦参考帧出现错误,随后的所有依赖帧也会出现错误,使得压缩视频对传输错误很敏感。本文提出了一种随机插入内编码树单元(CTU)的随机内刷新率(RIR)方法,在不显著增加速率失真优化(RDO)成本的前提下,减少错误传播,提高对传输错误的鲁棒性。此外,本研究还利用MATLAB和Simulink结合参考软件对信道进行建模和仿真,并在模拟的受害者ISDB-T传输系统上传输运动电平和编码1080p分辨率的复杂视频,该传输系统具有干扰IEEE 802.22 PHY发射机扫描干扰功率和中心频率。采用标准H.265或HEVC编码器实现的方案与具有不同比特率、错误率和刷新率的纯编码间仿真进行了比较。测试结果表明,在10% RIR条件下,平均PSNR提高1.59 dB, 25% RIR条件下提高2.99 dB, 33% PER条件下,50% RIR条件下平均PSNR提高4.65 dB,主观质量得到改善,证明了该方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of Random Intra Refresh on ISDB-T transmission with IEEE 802.22 Interference
Video compression is essential when conforming to a finite bandwidth and storage space. It performs inter prediction wherein it removes the temporal redundancy between neighboring frames enabling higher compression rates. However, once an error occurred on a reference frame, all the subsequent dependent frames will be in error as well, making compressed videos sensitive to transmission error. In this paper, we propose a method of random intra-refresh rate (RIR) by randomly inserting intra-coded coding tree unit (CTU) to reduce error propagation and improve the robustness to transmission errors without significantly increasing the rate distortion optimization (RDO) cost. Furthermore, this study also made use of channel modeling and simulation using MATLAB and Simulink with the reference software and done by transmitting motion levels and encoding complexity 1080p resolution video over a modelled victim ISDB-T Transmission System with interferer IEEE 802.22 PHY Transmitter sweeping interferer’s power and center frequency. The proposed scheme, implemented using standard H.265 or HEVC encoder, is compared to a pure inter coding simulation with various bitrates, error rates, and refresh rates. Average PSNR improvements of 1.59 dB for 10% RIR, 2.99 dB for 25% RIR, and 4.65 dB for 50% RIR at 33% PER are measured and subjective quality improvements are observed which proves the effectiveness of the proposed scheme.
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