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Channel Coding for Progressive Images in a 2-D Time-Frequency OFDM Block With Channel Estimation Errors

机译:具有信道估计误差的二维时频OFDM块中渐进图像的信道编码

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Coding and diversity are very effective techniques for improving transmission reliability in a mobile wireless environment. The use of diversity is particularly important for multimedia communications over fading channels. In this work, we study the transmission of progressive image bitstreams using channel coding in a 2D time-frequency resource block in an OFDM network, employing time and frequency diversities simultaneously. In particular, in the frequency domain, based on the order of diversity and the correlation of individual subcarriers, we construct symmetric n-channel FEC-based multiple descriptions using channel erasure codes combined with embedded image coding. In the time domain, a concatenation of RCPC codes and CRC codes is employed to protect individual descriptions. We consider the physical channel conditions arising from various coherence bandwidths and coherence times, leading to a range of orders of diversities available in the time and frequency domains. We investigate the effects of different error patterns on the delivered image quality due to various fade rates. We also study the tradeoffs and compare the relative effectiveness associated with the use of erasure codes in the frequency domain and convolutional codes in the time domain under different physical environments. Both the effects of intercarrier interference and channel estimation errors are included in our study. Specifically, the effects of channel estimation errors, frequency selectivity and the rate of the channel variations are taken into consideration for the construction of the 2D time-frequency block. We provide results showing the gain that the proposed model achieves compared to a system without temporal coding. In one example, for a system experiencing flat fading, low Doppler, and imperfect CSI, we find that the increase in PSNR compared to a system without time diversity is as much as 9.4 dB.
机译:编码和分集是用于提高移动无线环境中的传输可靠性的非常有效的技术。分集的使用对于在衰落信道上的多媒体通信特别重要。在这项工作中,我们研究了在OFDM网络的2D时频资源块中使用信道编码同时使用时间和频率分集的渐进式图像比特流的传输。特别是,在频域中,基于分集的顺序和各个子载波的相关性,我们使用信道擦除码与嵌入式图像编码相结合,构造了基于对称n信道FEC的多个描述。在时域中,采用RCPC码和CRC码的连接来保护单个描述。我们考虑由于各种相干带宽和相干时间而产生的物理信道状况,从而导致在时域和频域中可利用的一系列分集。我们调查了由于各种淡入淡出率而导致的不同错误模式对所交付图像质量的影响。我们还研究了折衷方案,并比较了在不同物理环境下使用频域中的擦除码和时域中的卷积码所产生的相对有效性。载波间干扰和信道估计误差的影响都包括在我们的研究中。具体地,在二维时频块的构造中,考虑了信道估计误差,频率选择性和信道变化率的影响。我们提供的结果表明,与没有时间编码的系统相比,所提出的模型可实现的增益。在一个示例中,对于经历平坦衰落,低多普勒和不完美CSI的系统,我们发现与没有时间分集的系统相比,PSNR的增加高达9.4 dB。

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