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The MIGHTI Wind Retrieval Algorithm: Description and Verification

机译:MIGHTI风检索算法:描述和验证

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摘要

We present an algorithm to retrieve thermospheric wind profiles from measurements by the Michelson Interferometer for Global High-resolution Thermospheric Imaging (MIGHTI) instrument on NASA’s Ionospheric Connection Explorer (ICON) mission. MIGHTI measures interferometric limb images of the green and red atomic oxygen emissions at 557.7 nm and 630.0 nm, spanning 90–300 km. The Doppler shift of these emissions represents a remote measurement of the wind at the tangent point of the line of sight. Here we describe the algorithm which uses these images to retrieve altitude profiles of the line-of-sight wind. By combining the measurements from two MIGHTI sensors with perpendicular lines of sight, both components of the vector horizontal wind are retrieved. A comprehensive truth model simulation that is based on TIME-GCM winds and various airglow models is used to determine the accuracy and precision of the MIGHTI data product. Accuracy is limited primarily by spherical asymmetry of the atmosphere over the spatial scale of the limb observation, a fundamental limitation of space-based wind measurements. For 80% of the retrieved wind samples, the accuracy is found to be better than 5.8 m/s (green) and 3.5 m/s (red). As expected, significant errors are found near the dayight boundary and occasionally near the equatorial ionization anomaly, due to significant variations of wind and emission rate along the line of sight. The precision calculation includes pointing uncertainty and shot, read, and dark noise. For average solar minimum conditions, the expected precision meets requirements, ranging from 1.2 to 4.7 m/s.
机译:我们提出了一种算法,该算法通过NASA的电离层连接浏览器(ICON)任务的全球高分辨率热层成像(MIGHTI)仪器的迈克尔逊干涉仪的测量结果来检索热层风廓线。 MIGHTI在557.7 nm和630.0 nm的90–300 km范围内,测量了绿色和红色原子氧发射的干涉式肢体图像。这些排放物的多普勒频移代表了视线切线处风的遥测。在这里,我们描述了使用这些图像来检索视线风的高度剖面的算法。通过将来自两个MIGHTI传感器的测量结果与垂直视线相结合,可以获取矢量水平风的两个分量。使用基于TIME-GCM风和各种气辉模型的综合真值模型仿真来确定MIGHTI数据产品的准确性和精度。准确性主要受到肢体观察的空间尺度上大气的球形不对称性的限制,这是基于空间的风测量的基本限制。对于80%的回收风样,发现精度优于5.8 m / s(绿色)和3.5 m / s(红色)。正如预期的那样,由于风和发射率沿视线的显着变化,在昼/夜边界附近以及偶尔在赤道电离异常附近发现了重大误差。精度计算包括指向不确定性以及散粒,读取和暗噪声。对于平均太阳能最低条件,预期精度可以满足要求,范围为1.2至4.7 m / s。

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