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Trapezoid pixel array complementary metal oxide semiconductor image sensor with simplified mapping method for traffic monitoring applications

机译:具有简化映射方法的梯形像素阵列互补金属氧化物半导体图像传感器,用于交通监控应用

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摘要

A trapezoid (TZOID) pixel array complementary metal oxide semiconductor (CMOS) image sensor, and a pixel-resolution mapping (P-RM) method to extract information from the observed objects without requiring any specific patterns or man-made markings, are proposed for traffic applications. The size of each pixel in the TZOID imager was determined by pixel design equations based on the relationship between the pixel's physical size and related spatial resolution. The TZOID imager trades detection accuracy for a tolerable data loss to reduce communication bandwidth and computation power. The P-RM method determines the pixels' actual resolutions in the real world of the captured imaged by both standard rectangular single- and multireso-lution TZOID pixel arrays. Both indoor and outdoor experiments were performed using single- and multireso-lution imagers. The TZOID imager integrated circuit (IC) was fabricated in a 0.18-μm CMOS process. It was tested, and its performance parameters were compared with an off-the-shelf CMOS image sensor IC. Tests showed that the TZOID generates 98% less data than that of a standard image sensor, trading off only 2% detection accuracy. Results also show that the proposed method provides a general procedure for designing a multiresolution sensor for traffic applications.
机译:提出了一种梯形(TZOID)像素阵列互补金属氧化物半导体(CMOS)图像传感器,以及一种无需任何特定图案或人造标记即可从观察对象中提取信息的像素分辨率映射(P-RM)方法。交通应用。 TZOID成像器中每个像素的大小是根据像素的物理大小与相关空间分辨率之间的关系通过像素设计方程式确定的。 TZOID成像器将检测精度与可容忍的数据丢失进行了折衷,以减少通信带宽和计算能力。 P-RM方法确定由标准矩形单分辨率和多分辨率TZOID像素阵列成像的捕获图像在现实世界中的像素实际分辨率。使用单分辨率和多分辨率成像仪进行室内和室外实验。 TZOID成像仪集成电路(IC)采用0.18μmCMOS工艺制造。经过测试,并将其性能参数与现成的CMOS图像传感器IC进行了比较。测试表明,TZOID生成的数据比标准图像传感器少98%,仅牺牲了2%的检测精度。结果还表明,所提出的方法为交通应用设计多分辨率传感器提供了通用程序。

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