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Parallel transmission framework for layered coded multimedia data over spectrally shaped channels

机译:频谱成形通道上分层编码的多媒体数据的并行传输框架

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This paper presents a new parallel transmission framework for reliable multimedia data transmission over spectrally shaped channels using multicarrier modulation. We propose to transmit source data layers of different perceptual importance in parallel, each occupying a number of subchannels. New loading algorithms are developed to efficiently allocate the available resources, e.g. transmitted power and bit rate, to the subchannels according to the source layers they transmit. Instead of making the bit error rate of all the subchannels equal as in most existing loading algorithms, the proposed algorithm assigns different error performance to the subchannels as to achieve unequal error protection for different layers. The channel induced distortion in mean-square sense is minimized. We show that the proposed system can be applied nicely to both fixed length coding and variable length coding. Numerical examples show that the proposed algorithm achieves significant performance improvement comparing to the existing work for spectrally shaped channels commonly used in in ADSL.
机译:本文提出了一种新的并行传输框架,用于使用多载波调制在频谱成形通道上进行可靠的多媒体数据传输。我们建议并行传输具有不同感知重要性的源数据层,每个源数据层都占用多个子通道。开发了新的加载算法以有效分配可用资源,例如传输功率和比特率,根据它们所传输的源层传输到子信道。所提出的算法不是使所有子信道的误码率等于大多数现有的加载算法,而是为子信道分配了不同的误码性能,以实现对不同层的不平等的误码保护。均方意义上的通道引起的失真被最小化。我们表明,所提出的系统可以很好地应用于固定长度编码和可变长度编码。数值算例表明,与ADSL中常用的频谱成形信道的现有工作相比,该算法实现了显着的性能提升。

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