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首页> 外文期刊>IEEE Transactions on Circuits and Systems for Video Technology >Layered video transmission over wireless multirate DS-CDMA links
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Layered video transmission over wireless multirate DS-CDMA links

机译:无线多速率DS-CDMA链路上的分层视频传输

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摘要

In this paper, we consider the transmission of video over wireless direct-sequence code-division multiple access (DS-CDMA) channels. A layered (scalable) video source codec is used. The layers may be time-multiplexed and transmitted over a single CDMA channel or each layer can be transmitted over a different CDMA channel. For the latter case, spreading codes of different lengths are allowed for each CDMA channel (multirate CDMA). Thus, a different number of chips per bit can be used for the transmission of each scalable layer. For a given fixed energy value per chip and chip rate, the selection of a spreading code length affects the transmitted energy per bit and bit rate for each scalable layer. An MPEG-4 source encoder is used to provide a two-layer signal-to-noise-ratio scalable bit stream. Each of the two layers is channel-coded using rate-compatible punctured convolutional codes. Then, the data are interleaved, spread, carrier-modulated, and transmitted over the wireless channel. A multipath Rayleigh fading channel model is assumed. At the other end, the signal is collected by an antenna array front. After carrier demodulation, multiple-access-interference suppressing despreading is performed using adaptive space-time auxiliary-vector (AV) filters. The choice of the AV space-time receiver is dictated by realistic channel fading rates that limit the data record available for receiver adaptation and redesign. Our experimental results demonstrate the effectiveness of such a multirate DS-CDMA system for wireless video transmission.
机译:在本文中,我们考虑了通过无线直接序列码分多址(DS-CDMA)信道传输视频。使用分层(可缩放)视频源编解码器。这些层可以被时分复用并在单个CDMA信道上发送,或者每个层可以在不同的CDMA信道上发送。对于后一种情况,对于每个CDMA信道(多速率CDMA)允许不同长度的扩展码。因此,每比特可使用不同数量的码片用于每个可伸缩层的传输。对于每个码片和码片速率的给定固定能量值,扩展码长度的选择会影响每个可扩展层的每比特传输能量和比特率。 MPEG-4源编码器用于提供两层信噪比可伸缩比特流。使用速率兼容的收缩卷积码对这两层中的每一层进行信道编码。然后,在无线信道上对数据进行交织,扩展,载波调制和传输。假设多径瑞利衰落信道模型。在另一端,信号由天线阵列前端收集。载波解调后,使用自适应空时辅助矢量(AV)滤波器执行多址干扰抑制解扩。 AV空时接收机的选择取决于实际的信道衰落率,该信道衰落率限制了可用于接收机调整和重新设计的数据记录。我们的实验结果证明了这种多速率DS-CDMA系统对于无线视频传输的有效性。

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