HJ-2 A/B 卫星红外传感器的在轨几何校准

Hao Zhang, Wei Qin, Kaixin Wang, Qianying Wang, Pengjie Tao
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摘要

摘要随着中国卫星技术的进步,配备了拂尘式红外传感器的 "环景二号 A/B"(HJ-2 A/B)卫星代表了环境监测和地球观测能力的重大飞跃。然而,这一技术飞跃也带来了校准方面的新挑战。HJ-2 A/B红外分光辐射计(IRS)的独特结构要求采用创新的校准技术,因为传统方法主要关注外部方位参数(EOPs),往往忽视了内部方位精度的重要性,而内部方位精度对于准确的多光谱波段配准和色彩呈现至关重要。为了弥补这一不足,我们引入了一种创新的多焦平面阵列联合校准方法,该方法专门针对拂扫相机而设计。我们的方法包括从每个焦平面阵列中选择一个主波段进行准确的焦距校准,并通过图像匹配和高度插值得出地面控制点,以进行全面的波束调整。这种调整完善了 EOP 和内部方位参数 (IOP),确保了全局最优的 EOP 和增强的 IOP 校准稳定性。将我们的方法应用于 HJ-2 A/B IRS,大大提高了地理参照和波段配准精度,超过了传统方法。本文详细介绍了多焦平面阵列联合校准方法,描述了红外成像系统和实验装置,展示了实验结果,并总结了我们的研究结果的意义和潜在应用。
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On-Orbit Geometric Calibration of the HJ-2 A/B Satellites' Infrared Sensors
Abstract. With the advancement of China's satellite technology, the HuanJingJianZai-2 A/B (HJ-2 A/B) satellites, equipped with whisk-broom infrared sensors, represent a significant leap forward in environmental monitoring and Earth observation capabilities. This technological leap, however, introduces new challenges in calibration. The unique structure of the HJ-2 A/B infrared spectroradiometer (IRS) necessitates innovative calibration techniques, as traditional methods primarily focused on exterior orientation parameters (EOPs) and often overlooked the importance of interior orientation accuracy, which is essential for accurate multispectral band registration and color rendering. Addressing this gap, we introduce an innovative multi-focal-plane-array joint calibration method specifically designed for whisk-broom cameras. Our method involves selecting a master band from each focal plane array for accurate focal length calibration and deriving ground control points from image matching and altitude interpolation for comprehensive bundle adjustment. This adjustment refines EOPs and interior orientation parameters (IOPs), ensuring globally optimal EOPs and enhanced IOPs calibration stability. The application of our method to the HJ-2 A/B IRS yielded substantial improvements in georeferencing and band registration accuracies, surpassing traditional methods. This paper details the multi-focal-plane-array joint calibration method, describes the IRS and experimental setup, presents the experimental results, and concludes with the implications and potential applications of our findings.
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