首页> 外文会议>Sensors and Camera Systems for Scientific and Industrial Applications VI >A CMOS Image Sensor with High-Speed Readout of Multiple Region-of-Interests for an Opto-Navigation System A CMOS image sensor with high-speed readout of multiple region-of-interests for an opto-navigation system
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A CMOS Image Sensor with High-Speed Readout of Multiple Region-of-Interests for an Opto-Navigation System A CMOS image sensor with high-speed readout of multiple region-of-interests for an opto-navigation system

机译:具有用于光学导航系统的多个兴趣区域的高速读出的CMOS图像传感器用于光学导航系统的具有多个兴趣区域的高速读出的CMOS图像传感器

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摘要

We propose a CMOS image sensor which can capture both whole images at 60 fps and several region-of-interests (ROIs) images at a high-speed frame rate of 2.1 kips. We have designed a sensor prototype for our newly developed man-machine interface system called "Opto-Navigation". In the system, LEDs as optical beacons are equipped with portable devices such as mobile phones and digital cameras, and provide a useful guide for visually aided data communication with them. The optical beacons inform their positions at slow frequency around 10 Hz, which define ROIs, and send their ID data with bit rate of Ikbps to the sensor. The sensor can recognize the position of IDs with frame differences of 60-fps images and then obtain the ID data by reading only ROIs at high frame rate. Thus by using the image sensor a user can know what devices can be communicated with and select one of them to send/receive information data. A QVGA image sensor dedicated for the "Opto-Navi" system has been fabricated in a 0.35-μm 2-poly 3-metal standard CMOS technology. The pixel has 7.5 x 7.5 μm~2 area with a fill factor of 24.9%.
机译:我们提出了一种CMOS图像传感器,该传感器可以以2.1 fps的高速帧速率捕获60 fps的整个图像和几个关注区域(ROI)图像。我们已经为新开发的人机界面系统“光电导航”设计了传感器原型。在该系统中,作为光信标的LED配备了便携式设备,例如移动电话和数码相机,并为与它们进行视觉辅助数据通信提供了有用的指南。光学信标以10 Hz左右的慢频率通知其位置,从而确定ROI,然后将其ID数据以Ikbps的比特率发送给传感器。传感器可以识别具有60 fps图像帧差的ID的位置,然后通过仅以高帧速率读取ROI来获取ID数据。因此,通过使用图像传感器,用户可以知道可以与哪些设备通信并选择其中之一以发送/接收信息数据。专用于“ Opto-Navi”系统的QVGA图像传感器采用0.35-μm2聚3金属标准CMOS技术制造。像素面积为7.5 x 7.5μm〜2,填充率为24.9%。

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