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首页> 外文期刊>CEAS Space Journal >NanoCarb hyperspectral sensor: on performance optimization and analysis for greenhouse gas monitoring from a constellation of small satellites
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NanoCarb hyperspectral sensor: on performance optimization and analysis for greenhouse gas monitoring from a constellation of small satellites

机译:纳米卡布高光谱传感器:小卫星星座温室气体监测的性能优化与分析

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摘要

NanoCarb is an innovative Fourier-transform imaging spectrometer dedicated to the measurement of CO_2 and CH_4. Both its unusual optical principle and sampling strategy allow to reach a compact design, ideal for small satellite constellation as investigated by the European project SCARBO. The NanoCarb performance assessment as well as a proof of concept is required in this framework. We have developed a design strategy to optimize the performances. We demonstrate the potential of the concept through an estimation of the sensitivity, compliant with the space mission target. We also present a preliminary mitigation of the bias induced by water on CO_2 and CH_4 retrieval, illustrating the efficiency and the flexibility of the NanoCarb partial interferogram sampling technique. The presented design reaches a sub-ppm random error for CO_2 and sub-10 ppb random error for CH_4, considering 128 km swath and 2 by 2 km~2 ground resolution. Design optimization and more systematic performances are discussed.
机译:NanoCarb是一种专用于CO_2和CH_4的测量的创新傅里叶变换成像光谱仪。其不寻常的光学原理和采样策略都允许达到紧凑的设计,适用于由欧洲项目稀缺调查的小型卫星星座。在本框架中需要纳米卡布性能评估以及概念证明。我们开发了一种优化性能的设计策略。我们通过估计灵敏度来展示概念的潜力,符合空间任务目标。我们还提出了对CO_2和CH_4检索的水诱导的偏差的初步减轻,示出了纳米卡部分干涉图采样技术的效率和柔韧性。呈现的设计对于CH_4的CO_2和SUB-10 PPB随机误差达到子PPM随机误差,考虑到128km静脉,2×2 km〜2个地面分辨率。讨论了设计优化和更系统的性能。

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