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Signal processing LSI system for digital still camera

机译:数码相机信号处理LSI系统

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Abstract: This paper presents a feature of an image data compression system, and the algorithm employed in a newly developed digital still camera (FUJIX Card Camera DS-H1). DS-H1 is composed of a CCD with 390K pixels, a digital signal processing unit, and image data compression units named DCT and CODER. An IC memory card of 8 Mbit SRAM is used as the recording media. DS-H1 has not only a function of an image data recording, but also a play back for the instantaneous review. A new algorithm is used for controlling a bit rate of a still frame compressed by ADCT (Adaptive Discrete Cosine Transform). The image data control is an important function for digital still camera in order to guarantee the total number of still images stored in an IC memory card. An information distribution of each image data blocks (8*8) is estimated as ACTIVITY. An adequate quantization step ($alpha@) is calculated using ACTIVITY and parameters named K1, K2. A set of K1 and K2 suitable for the target compression ratio is transferred from CPU to CODER before the compression sequence starts. As a result of our evaluation, it is actually proved that ADCT with the control function is successfully implemented in a small camera body of DS-H1. Picture quality of the played back images is good. K1, K2 and ACTIVITY are important parameters to determine the bit rate control accuracy and the picture quality of compressed/decompressed images. Our simulation results shows that adequate K1, K2 realize a good picture quality and a high control accuracy.!
机译:摘要:本文介绍了图像数据压缩系统的功能,以及新开发的数码相机(FUJIX卡片相机DS-H1)采用的算法。 DS-H1由390K像素的CCD,数字信号处理单元和名为DCT和CODER的图像数据压缩单元组成。 8 Mbit SRAM的IC存储卡用作记录介质。 DS-H1不仅具有图像数据记录功能,而且还具有即时查看的回放功能。一种新算法用于控制由ADCT(自适应离散余弦变换)压缩的静止帧的比特率。图像数据控制是数码相机的一项重要功能,以确保IC存储卡中存储的静止图像总数。每个图像数据块(8×8)的信息分布被估计为ACTIVITY。使用ACTIVITY和名为K1,K2的参数计算适当的量化步长($ alpha @)。在压缩序列开始之前,将适合目标压缩率的一组K1和K2从CPU传输到CODER。根据我们的评估结果,实际上证明了具有控制功能的ADCT已在DS-H1的小型相机机身中成功实现。播放图像的图像质量良好。 K1,K2和ACTIVITY是确定比特率控制精度和压缩/解压缩图像的图像质量的重要参数。我们的仿真结果表明,适当的K1,K2可实现良好的图像质量和较高的控制精度。

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