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Low-power high-accuracy micro-digital sun sensor by means of a CMOS image sensor

机译:借助CMOS图像传感器的低功耗高精度微数字阳光传感器

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摘要

A micro-digital sun sensor (?DSS) is a sun detector which senses a satellite’s instant attitude angle with respect to the sun. The core of this sensor is a system-on-chip imaging chip which is referred to as APS+. The APS+ integrates a CMOS active pixel sensor (APS) array of 368×368??pixels , a 12-bit analog-to-digital converter, and digital signal processing circuits. The ?DSS is designed particularly for microsatellite applications, thus low power consumption is the major design consideration. The APS+ reduces power consumption mainly with profiling and windowing methods which are facilitated by the specific active-pixel design. A prototype of the APS+ which is designed in a standard 0.18-?m CMOS process is presented. The APS+ consumes 21 mW at 10 fps, which is 10 times less than the state of the art. In order to improve noise performance, a reset noise reduction method, quadruple sampling (QS), is implemented. QS reduces the effect of the reset noise compared to the conventional delta double sampling method, even in a 3-transistor active pixel structure. The APS+ obtains an accuracy of 0.01 deg with the QS method.
机译:微数字太阳传感器(?DSS)是一种太阳探测器,可感应卫星相对于太阳的即时姿态角。该传感器的核心是片上系统成像芯片,称为APS +。 APS +集成了一个368×368?像素的CMOS有源像素传感器(APS)阵列,一个12位模数转换器和数字信号处理电路。 ?DSS专为微卫星应用而设计,因此低功耗是主要的设计考虑因素。 APS +主要通过配置和开窗方法来降低功耗,这些方法通过特定的有源像素设计得以实现。展示了采用标准0.18-µm CMOS工艺设计的APS +原型。 APS +在10 fps下的功耗为21 mW,比现有技术少10倍。为了改善噪声性能,实施了重置噪声降低方法,即四重采样(QS)。与传统的Delta双采样方法相比,即使在3晶体管有源像素结构中,QS也会降低复位噪声的影响。通过QS方法,APS +可获得0.01度的精度。

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