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Layered Video Transmission over Multirate DS-CDMA Wireless Systems

机译:多型DS-CDMA无线系统上的分层视频传输

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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 and each layer is transmitted over a different CDMA channel. Spreading codes with 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 SNR scalable bitstream. Each of the two layers is channel-coded using Rate-Compatible Punctured Convolutional (RCPC) codes. Then, the data are interleaved, spread, carrier-modulated and transmitted over the wireless channel. A multipath Rayleigh fading channel is assumed. At the other end, we assume the presence of an antenna array receiver. After carrier demodulation, multiple-access-interference suppressing despreading is performed using space-time auxiliary vector (AV) filtering. The choice of the AV receiver is dictated by realistic channel fading rates that limit the data record available for receiver adaptation and redesign. Indeed, AV filter short-data-record estimators have been shown to exhibit superior bit-error-rate performance in comparison with LMS, RLS, SMI, or "multistage nested Wiener" adaptive filter implementations. Our experimental results demonstrate the effectiveness of multirate DS-CDMA systems for wireless video transmission.
机译:在本文中,我们考虑视频的在无线直接序列码分多路存取(DS-CDMA)信道的传输。分层(可伸缩的)视频源编解码器用于每个层在不同的CDMA信道来发送。具有不同长度的扩展码被允许对每个CDMA信道(多速率CDMA)。因此,可以用于每个可伸缩层的传输的不同数量的每比特的芯片。每芯片和芯片速率的给定的固定能量值,扩展码长度的选择会影响每比特和比特率的传输的能量为每个可伸缩层。一个MPEG-4源编码器被用于提供两层SNR可分级比特流。每两个层的被信道编码使用速率兼容删除卷积(RCPC)码。然后,数据被交错,扩散,载波调制并在无线信道上发送。假设多径瑞利衰落信道。在另一端,我们假定的天线阵接收机的存在。载波解调后,多址干扰抑制解扩使用空时辅助矢量(AV)滤波来执行。 AV接收机的选择是由现实的信道衰落速率限制可用的数据记录接收器调整和重新设计所决定的。事实上,AV滤波器短数据记录估计已显示在与LMS,RLS,SMI,或“多级嵌套维纳”自适应滤波器的实现相比,表现出优异的误码率性能。我们的实验结果表明无线视频传输的多速率DS-CDMA系统的有效性。

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