首页> 外文会议>Satellite Data Compression, Communications, and Archiving III; Proceedings of SPIE-The International Society for Optical Engineering; vol.6683 >Theoretical study of use of optical orthogonal codes for compressed video transmission in optical code division multiple access (OCDMA) system
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Theoretical study of use of optical orthogonal codes for compressed video transmission in optical code division multiple access (OCDMA) system

机译:在光码分多址(OCDMA)系统中使用光正交码进行压缩视频传输的理论研究

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摘要

A theoretical investigation to evaluate the performance of optical code division multiple access (OCDMA) for compressed video transmission is shown. OCDMA has many advantages than a typical synchronous protocol time division multiple access (TDMA). A pulsed laser transmission of multi channel digital video can be done using various techniques depending on whether the multi channel data are to be synchronous or asynchronous. A typical form of asynchronous digital operation is wavelength division multiplexing (WDM) in which the digital data of each video source are assigned a specific and separate wavelength. A sophisticated hardware such as accurate wavelength control of all lasers and tunable narrow band optical filters at the receivers is required in this case. A major disadvantage with CDMA is the reduction in per channel data rate (relative to the speeds available in the laser itself) that occurs in the insertion of code addressing. Hence optical CDMA for the video transmission application is meaningful when individual channel video bit rates can be significantly reduced and that can be done by compression of video data. In our work for compression of video image standard JPEG is implemented where a compression ratio of about 60 % is obtained without noticeable image degradation. Compared to the other existing techniques JPEG standard achieves higher compression ration with high S/N ratio. Here we demonstrated the auto and cross correlation properties of the codes. We have shown the implementation of bipolar Walsh coding in OCDMA system and their use in transmission of image/video.
机译:给出了评估光码分多址(OCDMA)压缩视频传输性能的理论研究。与典型的同步协议时分多址(TDMA)相比,OCDMA具有许多优势。可以使用多种技术来完成多通道数字视频的脉冲激光传输,具体取决于多通道数据是同步还是异步。异步数字操作的一种典型形式是波分复用(WDM),其中为每个视频源的数字数据分配一个特定且独立的波长。在这种情况下,需要复杂的硬件,例如所有激光器的精确波长控制和接收器处的可调窄带光学滤波器。 CDMA的主要缺点是在插入代码寻址时出现的每通道数据速率降低(相对于激光器本身可用的速度)。因此,当可以显着降低各个通道的视频比特率并且可以通过压缩视频数据来完成时,用于视频传输应用的光学CDMA便有意义。在我们对视频图像进行压缩的工作中,实现了JPEG压缩比约为60%的情况,而没有明显的图像质量下降。与其他现有技术相比,JPEG标准以较高的信噪比实现了更高的压缩率。在这里,我们演示了代码的自动和互相关属性。我们已经展示了OCDMA系统中双极性Walsh编码的实现及其在图像/视频传输中的使用。

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