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Multi-Aperture CMOS Sun Sensor for Microsatellite Attitude Determination

机译:用于微卫星姿态确定的多孔径CMOS太阳传感器

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摘要

This paper describes the high precision digital sun sensor under development at the University of Naples. The sensor determines the sun line orientation in the sensor frame from the measurement of the sun position on the focal plane. It exploits CMOS technology and an original optical head design with multiple apertures. This allows simultaneous multiple acquisitions of the sun as spots on the focal plane. The sensor can be operated either with a fixed or a variable number of sun spots, depending on the required field of view and sun-line measurement precision. Multiple acquisitions are averaged by using techniques which minimize the computational load to extract the sun line orientation with high precision. Accuracy and computational efficiency are also improved thanks to an original design of the calibration function relying on neural networks. Extensive test campaigns are carried out using a laboratory test facility reproducing sun spectrum, apparent size and distance, and variable illumination directions. Test results validate the sensor concept, confirming the precision improvement achievable with multiple apertures, and sensor operation with a variable number of sun spots. Specifically, the sensor provides accuracy and precision in the order of 1 arcmin and 1 arcsec, respectively.
机译:本文介绍了那不勒斯大学正在开发的高精度数字太阳传感器。传感器根据焦平面上太阳位置的测量值确定传感器框架中的太阳线方向。它利用CMOS技术和具有多个孔径的原始光学头设计。这允许同时多次获取太阳作为焦平面上的斑点。传感器可以在固定的或可变数量的太阳光斑下运行,具体取决于所需的视野和太阳线测量精度。通过使用使计算负荷最小化的技术来平均多次采集,以高精度提取太阳线方向。依赖于神经网络的校准功能的原始设计也提高了准确性和计算效率。使用能够再现太阳光谱,视在尺寸和距离以及可变照明方向的实验室测试设备进行广泛的测试活动。测试结果验证了传感器的概念,确认了通过多个孔可以实现的精度提高,以及在太阳点数量可变的情况下传感器的运行。具体地说,传感器提供的精确度和精确度分别为1 arcmin和1 arcsec。

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