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Performance of an electro-optical solar compass in partially obscured Sun conditions

机译:太阳光在部分遮挡的情况下的性能

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Solar compasses are designed to accurately find true North on sunny days. However, no data on their performance are available when sunlight is partially blocked, e.g., by a cloud. We have measured, for the first time to the best of our knowledge, the performance of one of the most accurate electro-optical solar compasses (accuracy better than 0.01 deg) as a function of the solar disk obscuration during the Sun's eclipse on 20 March 2015. The measurements show that the accuracy level is mainly dependent on the asymmetry of the obscuration with respect to the main axis of the optical detection system and, to a lesser extent, on the percentage of the solar disk covered. In particular, azimuth measurement suffered a maximum deviation of 0.08 deg when 35% of the solar disk was asymmetrically obscured. The deviation was smaller when 46% of the solar disk was more symmetrically obscured. This experiment demonstrates that, even in the case of a partially obscured Sun, the electro-optical solar compass maintains an accuracy better than magnetic and electronic compasses. (C) 2016 Optical Society of America
机译:太阳罗盘旨在在阳光明媚的日子准确找到真正的北方。然而,当阳光被例如云层部分阻挡时,没有关于其性能的数据。据我们所知,我们首次测量了3月20日日食期间最精确的电光太阳罗盘(精度优于0.01度)的性能与太阳盘遮挡的关系。 2015年的测量结果表明,准确度水平主要取决于遮盖物相对于光学检测系统主轴的不对称性,并在较小程度上取决于所覆盖的太阳能磁盘的百分比。特别是,当不对称地遮盖35%的太阳盘时,方位角测量的最大偏差为0.08度。当更对称地遮盖46%的太阳盘时,偏差较小。该实验表明,即使在太阳被部分遮挡的情况下,电光太阳罗盘的精度也要比磁罗盘和电子罗盘更好。 (C)2016美国眼镜学会

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