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基于低功耗SoC的微型图像采集系统设计

Design of Miniature Image Acquisition System Based on Low Power System on Chip

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【作者】 胡锦谢立红邹望辉张磊胡啸东

【Author】 HU Jin;XIE Lihong;ZOU Wanghui;ZHANG Lei;HU Xiaodong;School of Physics and Electronics,Hunan University;Institute of Computing Technology of Chinese Academy of Sciences;Netforward Shenzhen;

【通讯作者】 胡锦;

【机构】 湖南大学物理与微电子科学学院中国科学院计算技术研究所深圳市楠菲微电子有限公司

【摘要】 针对低成本和低功耗的物联网SoC芯片发展要求,基于SMIC 55 nm CMOS工艺,以低功耗开源处理器RI5CY的SoC芯片为平台,结合片内含有DSP与A/D转换功能的低电压CMOS图像传感器OV7725,设计并实现了一款基于开源RISC_V指令集架构SoC芯片的图像采集控制系统.文中介绍了图像采集控制系统的结构,并详细阐述基于AHB总线的图像采集控制器的设计.控制器采用一种改进的异步FIFO来实现不同时钟域的同步设计,具有小面积和低功耗的特点.通过Modelsim仿真、DC综合以及FPGA验证,结果表明:该系统实现了视频图像数据的采集和传输,操作流程简单,易于软件调试,支持应用最高带宽可达37 MB/s. SoC芯片系统的时钟主频为200 MHz,芯片总面积为3 250×3 648μm2,总功耗仅为24.419 mW.

【Abstract】 Based on the development requirements of low-cost and low-power Internet SoC chip, an image acquisition and control system is designed and implemented based on open source RISC_V instruction set architecture SoC chip and SMIC 55 nm CMOS process, which uses the low-power open source processor RI5 CY SoC chip as a platform and combined with the Low-Voltage CMOS Image Sensor OV7725 with the integrated DSP and A/D con-version chip inside. This paper introduces the block diagram of the image acquisition and control system, and de-scribes a design of image acquisition controller based on AHB bus in detail. An improved asynchronous FIFO with low power and small area is used to realize the synchronous design of different clock domains. According to the re-sults of Modelsim simulation, DC synthesis and FPGA verification shows that the system realizes the video image da-ta acquisition and transmission,which operation flow is simple and easy to debug, and the maximum of the data transmission bandwidth come up to 37 MB/s. The chip total area is 3250 μm x 3648 μm and power consumption is only 24.419 mW.

【关键词】 图像采集SoCRISC_V异步FIFO
【Key words】 image acquisitionSocRISC_Vasynchronous FIFO
【基金】 国家自然科学基金资助项目(61674055)~~
  • 【文献出处】 湖南大学学报(自然科学版) ,Journal of Hunan University(Natural Sciences) , 编辑部邮箱 ,2019年02期
  • 【分类号】TP391.41;TP274.2
  • 【被引频次】5
  • 【下载频次】224
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