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首页> 外文期刊>Journal of Spacecraft and Rockets >Parametric Processing for Two-Dimensional Digital Sun Sensors: Algorithms, Modeling, and Testing
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Parametric Processing for Two-Dimensional Digital Sun Sensors: Algorithms, Modeling, and Testing

机译:二维数字太阳传感器的参数处理:算法,建模和测试

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This paper presents the modeling, algorithm development, and laboratory testing of a two-axis digital sun sensor. The basis for our modeling is the Sinclair Interplanetary SS-330, a sensor that employs a single linear array to provide two-axis measurements of the sun vector. The detector illumination simulation includes consideration of Fresnel diffraction, finite pixel size, the extended nature of the sun, and a detector-noise model to synthesize artificial images. Simulated images agree with actual sensor images to within about 3.2% (root mean square). Algorithm studies contrast the performance of existing peak-detection routines (e.g., peak detections and centroiding) with more sophisticated parametric algorithms. Laboratory studies confirm that these modified algorithms can provide a threefold performance improvement over the baseline sensor processing. These results also evaluate the simulation's ability to provide accurate estimates of sensor performance. Although the simulations qualitatively replicate many behaviors, they are not yet accurate enough to be used in place of hardware validation.
机译:本文介绍了两轴数字阳光传感器的建模,算法开发和实验室测试。我们建模的基础是Sinclair行星际SS-330,该传感器采用单个线性阵列来提供太阳矢量的两轴测量。探测器照明模拟包括菲涅耳衍射,有限像素大小,太阳的扩展特性以及合成人工图像的探测器噪声模型的考虑。模拟图像与实际传感器图像一致,误差在3.2%以内(均方根)。算法研究将现有峰值检测例程(例如,峰值检测和质心)的性能与更复杂的参数算法进行了对比。实验室研究证实,与基准传感器处理相比,这些修改后的算法可将性能提高三倍。这些结果还评估了仿真提供传感器性能的准确估计的能力。尽管模拟从质量上复制了许多行为,但它们还不够准确,无法用于代替硬件验证。

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