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A Miniaturized Micro-Digital Sun Sensor by Means of Low-Power Low-Noise CMOS Imager

机译:低功耗低噪声CMOS成像器的微型微数字太阳传感器

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摘要

A digital sun sensor is superior to an analog sun sensor in aspects of resolution, albedo immunity, and integration. The proposed micro-digital sun sensor $(mu{rm DSS})$ is an autonomous digital sun sensor that is implemented through a CMOS image sensor, which is named active pixel sensor $({rm APS}+)$. The $mu{rm DSS}$ is designed specifically for micro-satellite application that addresses for low power and high accuracy. The ${rm APS}{+}$ significantly reduces the power consumption by a profiling method and obtains low noise by a quadruple sampling method. Measurement results show that the $mu{rm DSS}$ achieves an accuracy of 0.01$^{circ}$ with 21 mW at 10 fps, which is ten times less than the state of the art.
机译:在分辨率,反照率抗扰度和集成度方面,数字阳光传感器优于模拟阳光传感器。提出的微数字太阳传感器$(mu {rm DSS})$是通过CMOS图像传感器实现的自主数字太阳传感器,该传感器被称为有源像素传感器$({rm APS} +)$。 $ mu {rm DSS} $专为微卫星应用而设计,可解决低功耗和高精度问题。 $ {rm APS} {+} $通过分析方法显着降低了功耗,并通过四倍采样方法获得了低噪声。测量结果表明,$ mu {rm DSS} $在10 fps下以21 mW的精度达到0.01 $ ^ circ,比现有技术低十倍。

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