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ACE-FTS on SCISAT: 10th year on-orbit anniversary

机译:SCISAT上的ACE-FTS:在建10周年纪念日

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The Atmospheric Chemistry Experiment (ACE) is a mission on-board the Canadian Space Agency's (CSA) SCISAT-1. ACE is composed of a suite of instruments consisting of an infrared Fourier Transform Spectrometer (FTS) coupled with an auxiliary imager monitoring aerosols based on the extinction of solar radiation using two filtered detectors (visible and near infrared). A suntracker is also included to provide fine pointing during occultation. A second instrument, MAESTRO, is a spectrophotometer covering the near ultra-violet to the near infrared. In combination, the instrument payload covers the spectral range from 0.25 to 13.3 μm. The ACE mission came about from a need to better understand the chemical and dynamical processes that control the distribution of ozone in the upper troposphere and stratosphere, with particular emphasis on the Arctic region. Measurement of the vertical distribution of molecular species in these portions of the atmosphere permits elucidation of the key chemical and dynamical processes. The ACE-FTS measures the vertical distributions of trace gases as well as polar stratospheric clouds, aerosols, and temperature by a solar occultation technique from low earth orbit. By measuring solar radiation at high spectral resolution as it passes through different layers of the atmosphere, the absorption thus measured provides information on vertical profiles of atmospheric constituents, temperature, and pressure. Detailed and sensitive vertical distribution of trace gases help to better understand the chemical processes not only for ozone formation and destruction but also for other dynamic processes in the atmosphere. The ACE/SCISAT-1 satellite was successfully launched by NASA on August 12, 2003, and has been successfully operating since, now celebrating its 10th year on-orbit anniversary. This paper presents a summary of the heritage and development history of the ACE-FTS instrument. Design challenges and solutions are related. The actual on-orbit performance is presented, and the health status of the instrument payload is discussed. Potential future follow-on missions are finally introduced.
机译:大气化学实验(ACE)是加拿大航天局(CSA)SCISAT-1的飞行任务。 ACE由一整套仪器组成,该仪器由红外傅里叶变换光谱仪(FTS)和辅助成像仪组成,该成像仪使用两个经过过滤的检测器(可见光和近红外光),根据太阳辐射的消灭来监控气溶胶。还包括一个太阳跟踪器,以在掩星时提供精确的指示。第二种仪器MAESTRO是一种分光光度计,它覆盖了从近紫外到近红外的光。综合而言,仪器的有效载荷覆盖了0.25至13.3μm的光谱范围。 ACE的任务是需要更好地了解控制高层对流层和平流层中臭氧分布的化学和动力学过程,尤其是在北极地区。在大气的这些部分中分子种类的垂直分布的测量可以阐明关键的化学和动力学过程。 ACE-FTS通过太阳掩星技术从低地球轨道测量痕量气体以及极地平流层云,气溶胶和温度的垂直分布。通过以高光谱分辨率测量太阳辐射穿过大气的不同层时的辐射,由此测得的吸收率可提供有关大气成分,温度和压力的垂直分布的信息。痕量气体的详细而灵敏的垂直分布有助于更好地理解化学过程,不仅可以了解臭氧的形成和破坏过程,还可以了解大气中其他动态过程。 ACE / SCISAT-1卫星由美国国家航空航天局(NASA)于2003年8月12日成功发射,此后一直在成功运行,现在已经是其第10个周年纪念日。本文总结了ACE-FTS仪器的传承与发展历史。设计挑战和解决方案是相关的。介绍了实际的在轨性能,并讨论了仪器有效载荷的健康状态。最后介绍了潜在的未来后续任务。

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