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Highly scalable JPEG image transmission with unequal error protection and optimal feedback

机译:高度可扩展的JPEG图像传输,具有不平等的错误保护和最佳反馈

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This paper investigates the performance of three different Unequal Error Protection (UEP) schemes for progressive JPEG image transmission using delay-constrained hybrid ARQ, with iterative bit and symbol combining. The first UEP scheme considers only the optimization of channel code-rates and keeps the number of retransmissions fixed for all the subbands of the image. The second one optimizes both the channel code-rates and retransmissions, while the third only considers the optimal allocation of retransmission requests. The UEP schemes are designed with two different coding techniques. The first one employs Rate Compatible Punctured Turbo Codes (RCPT) with iterative bit combining and, is suitable for applications requiring high power efficiency. For the second one we propose a new coding strategy, Rate Compatible Punctured Turbo Trellis Coded Modulation (RCPTTCM) with iterative symbol combining, which provides high scalability and bandwidth efficiency. Gains of over 9 dB in Peak-Signal-to-Noise-Ratio are obtained with the UEP schemes as compared to their corresponding Equal Error Protection (EEP) schemes.
机译:本文研究了三种不同的不等错误保护(UEP)方案在使用延迟受限的混合ARQ,迭代位和符号组合进行渐进JPEG图像传输时的性能。第一种UEP方案仅考虑信道码率的优化,并且对于图像的所有子带,将重传次数保持固定。第二个优化信道码率和重传,而第三个仅考虑重传请求的最佳分配。 UEP方案使用两种不同的编码技术进行设计。第一种采用速率兼容穿刺Turbo码(RCPT)和迭代位组合,适用于需要高功率效率的应用。对于第二个方案,我们提出了一种新的编码策略,即具有迭代符号组合的速率兼容穿刺涡轮网格编码调制(RCPTTCM),它提供了高可扩展性和带宽效率。与UEP方案对应的均等错误保护(EEP)方案相比,UEP方案在峰值信噪比中获得了超过9 dB的增益。

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