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Sensor model for space-based local area sensing of debris

机译:用于天基碎片的空间感测的传感器模型

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A model is being developed to evaluate the capabilities of various LWIR sensors and combinations of sensors to provide Local Area Awareness for satellites in low-Earth and geostationary orbit. The model being developed will be used to evaluate the system performance of LWIR detectors mounted at various locations on the satellite against multiple observation scenarios with multiple debris configurations. LWIR sensors have been chosen as the detector technology for the initial phase of research because of their ability to operate with the sun in their field of view (FOV) while imaging nearby debris in the long-wave infrared band without the need for additive components such as baffles or solar occluders. This report describes progress on the development of this model. Preliminary results demonstrate the modeling of debris and its LWIR signature for each simulated orbital path. Results are presented in terms of radiant flux of the tracked debris. Radiant flux results are shown for all times the observed debris can be seen by the observing satellite or sensor platform. These results are evaluated for each face, or side, of the observed debris, as well as a composite of all faces. It is shown that intensity-based detection and characterization techniques may be quantified from this research, based on the different emissivities and temperatures of certain space debris materials. The results presented in this report are of simulated debris in the local are of a GEO based sensing platform.
机译:正在开发一种模型,以评估各种LWIR传感器和传感器组合的功能,以为低地球和地球静止轨道的卫星提供局域意识。正在开发的模型将用于评估安装在卫星上不同位置的LWIR探测器针对具有多种碎片配置的多种观测情况的系统性能。 LWIR传感器已被选作研究初始阶段的检测器技术,因为它们能够在视场(FOV)中与太阳一起工作,同时在长波红外波段对附近的碎片成像,而无需使用诸如此类的附加组件。作为挡板或日光封堵器。该报告描述了该模型开发的进展。初步结果证明了每种模拟轨道路径的碎片建模及其LWIR签名。结果以跟踪的碎片的辐射通量表示。始终通过观测卫星或传感器平台看到观测到的碎片显示辐射通量结果。对观察到的碎片的每个面或侧面以及所有面的组合评估这些结果。结果表明,基于某些空间碎片材料的不同发射率和温度,可以从这项研究中量化基于强度的检测和表征技术。本报告中提供的结果是基于GEO的传感平台在本地模拟的碎片。

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