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Adaptive Low-Rate Wireless Videophone Schemes

机译:自适应低速无线可视电话方案

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摘要

Abstract - The design and performance of a range of wireless videophone transceivers are presented. Ifighly bandwidth efficient, fixed but arbitrarily programmable rate, perceptually weighted Discrete Cosine Transform (DCT) based video codecs are proposed for quarter common intermediate format (QCIF) videophone sequences. Perceptually weighted cost/gain controlled motion compensation and quad-class DCT-based compression is applied with and without run-length coding. Specifically, we propose video codecs having transmission rates In the range of 5-11.36 kbps and preselected the 11.36 kbps Codec 1, the 8.52 kbps Codec and the 8 kbps Codec 2a, for which we designed the intelligent reconfigurable Systems 1-5. After sensitivity-matched binary Bose-Chaudhuri-Hocquenghem (BCH) forward error correction (FEC) coding the data rate associated with Codec 1 and Codec 2a became 20.32 kbps, while that of Codec 2 was 15.24 kbps. Throughout these systems a partial forced update (PM) technique was invoked in order to keep transmitter and receiver aligned amongst hostile channel conditions. When using Codec 1 in System 1 and coherent pilot symbol assisted 16-level quadrature amplitude modulation (16-PSAQAM), an overall signalling rate of 9 kBd was yielded. Over lower quality channels the 4QAM mode of operation had to be invoked, which required twice as many time slots to accommodate the resulting 18 kBd stream. The system's robustness was increased using Automatic Repeat Requests (ARQ), Inevitably reducing the number of users supported, which was between 6 and 19 for the various systems. In a bandwidth of 200 kHz, similarly to the Pan-European GSM mobile radio system's speech channel, using System 1 for example 16 and 8 videophone users can be supported in the l6QAM and 4QAM modes, respectively. All system features are summarized In Table Ill.
机译:摘要-介绍了一系列无线视频电话收发器的设计和性能。对于四分之一通用中间格式(QCIF)视频电话序列,提出了基于带宽加权,固定但任意可编程的速率的基于感知加权离散余弦变换(DCT)的视频编解码器。具有或不具有游程编码的情况下,均应用了感知加权成本/增益控制的运动补偿和基于四类DCT的压缩。具体来说,我们提出传输速率在5-11.36 kbps范围内的视频编解码器,并预先选择11.36 kbps编解码器1、8.52 kbps编解码器和8 kbps编解码器2a,为此我们设计了智能可重配置系统1-5。经过灵敏度匹配的二进制Bose-Chaudhuri-Hocquenghem(BCH)前向纠错(FEC)编码后,与编解码器1和编解码器2a相关联的数据速率变为20.32 kbps,而编解码器2的数据速率为15.24 kbps。在这些系统中,调用了部分强制更新(PM)技术,以使发送器和接收器在敌对信道条件下保持一致。当在系统1中使用编解码器1并采用相干导频符号辅助的16级正交幅度调制(16-PSAQAM)时,总信令速率为9 kBd。在较低质量的信道上,必须调用4QAM操作模式,这需要两倍的时隙来容纳生成的18 kBd流。使用自动重复请求(ARQ)提高了系统的健壮性,不可避免地减少了支持的用户数量,不同系统的用户数量在6到19之间。与泛欧洲GSM移动无线电系统的语音通道类似,在200 kHz的带宽中,使用系统1例如,可以在16QAM和4QAM模式下分别支持16和8个视频电话用户。表III总结了所有系统功能。

著录项

  • 作者

    Hanzo L; Streit J;

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  • 年度 1995
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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