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MERTIS - System Theory and Simulation

机译:MERTIS-系统理论与仿真

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摘要

The deep-space ESA mission BepiColombo to planet Mercury will contain the advanced infrared remote sensing instrument MERTIS (MErcury Radiometer and Thermal infrared Imaging Spectrometer). The mission has the goal to explore the planets inner and surface structure and its environment. With MERTIS investigations of Mercury's surface layer within a spectral range of 7 — 14 /zm shall be conducted to specify and map Mercury's mineralogical composition with a spatial resolution of 500 m. Due to the limited mass and power budget the used micro-bolometer detector array will only have a temperature-stabilization and will not be cooled.The theoretical description of the instrument is necessary to estimate the performance of the instrument especially the signal to noise ratio. For that purpose theoretical models are derived from system theory. For a better evaluation and understanding of the instrument performance simulations are performed to compute the passage of the radiation of a hypothetical mineralogical surface composition through the optical system, the influence of the inner instrument radiation and the conversion of the overall radiation into a detector voltage and digital output signal. The results of the simulation can support the optimization process of the instrument parameters and could also assist the analysis of gathered scientific data. The simulation tool can be used as well for performance estimations of MERTIS-like systems for future projects.
机译:前往水星行星的深空ESA任务BepiColombo将包含先进的红外遥感仪器MERTIS(水银辐射计和热红外成像光谱仪)。该任务的目的是探索行星的内部和表面结构及其环境。通过MERTIS,应进行7-14 / zm光谱范围内的水星表层调查,以指定和绘制500 m空间分辨率的水星矿物成分。由于有限的质量和功率预算,所使用的微辐射热检测器阵列仅具有温度稳定性,不会被冷却。 仪器的理论描述对于评估仪器的性能尤其是信噪比是必要的。为此,从系统理论中得出理论模型。为了更好地评估和了解仪器的性能,进行了模拟以计算假设的矿物表面成分的辐射通过光学系统的通道,内部仪器辐射的影响以及总辐射到检测器电压的转换,以及数字输出信号。仿真结果可以支持仪器参数的优化过程,也可以帮助分析收集到的科学数据。该仿真工具还可用于未来项目的类似MERTIS的系统的性能评估。

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