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A Design of Real-Time JPEG Encoder for 1.4 Mega Pixel CMOS Image Sensor SoC

机译:用于1.4兆像素CMOS图像传感器SoC的实时JPEG编码器设计

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In this paper, we propose a hardware architecture of realtime JPEG encoder for 1.4 mega pixels CMOS image sensor SoC which can be applied to mobile communication devices. The proposed architecture has an efficient interface scheme with CMOS image sensor and other peripherals for real-time encoding. The JPEG encoder supports the baseline JPEG mode, and processes motion images of which resolution is up to 1280 x 960 (CCIR601 YCrCb 4:2:2,15 fps) by real-time processing. The JPEG encoder supports 8 types of resolution, and can serve the 4 levels of image quality through quantization matrix. The proposed JPEG encoder can transfer encoded motion pictures and raw image data from CMOS image sensor to external device through USB 2.0 and a compressed still image is stored at external pseudo SRAM through SRAM interface. And proposed core can communicate parameters of encoding type with other host by I2C. The proposed architecture was implemented with VHDL and verified for the functions with Synopsys and Modelsim. The encoder proposed in this paper was fabricated in process of 0.18 μ of Hynix semiconductor Inc.
机译:在本文中,我们提出了一种用于1.4兆像素CMOS图像传感器SoC的实时JPEG编码器的硬件架构,该架构可应用于移动通信设备。所提出的体系结构具有与CMOS图像传感器和其他外围设备的高效接口方案,用于实时编码。 JPEG编码器支持基线JPEG模式,并通过实时处理来处理分辨率高达1280 x 960(CCIR601 YCrCb 4:2:2,15 fps)的运动图像。 JPEG编码器支持8种类型的分辨率,并且可以通过量化矩阵提供4个级别的图像质量。所提出的JPEG编码器可以通过USB 2.0将已编码的运动图像和原始图像数据从CMOS图像传感器传输到外部设备,并且经过压缩的静止图像通过SRAM接口存储在外部伪SRAM中。并且提出的核心可以通过I2C与其他主机通信编码类型的参数。所提出的体系结构是用VHDL实现的,并已通过Synopsys和Modelsim进行了功能验证。本文提出的编码器是在0.18μHynix半导体公司的过程中制造的。

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