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Simulation of the Spectrum Response for the THz Atmosphere Limb Sounder (TALIS)

机译:太赫兹大气肢测深仪(TALIS)频谱响应的仿真

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摘要

The THz atmospheric limb sounder (TALIS) is a microwave radiometer developed by the National Space Science Center of the Chinese Academy of Sciences for the detection of atmospheric trace gases. The observation range of the instrument mainly focuses on the middle and upper atmosphere (10–100 km above the earth’s surface). The detection targets include the temperature, pressure, and more than 10 kinds of atmospheric components. Its scientific goal is to improve our comprehension of atmospheric chemical composition and dynamics, and to monitor environmental pollution and sources in the atmosphere. The TALIS instrument is composed of an antenna, superheterodyne radiometers, and digital fast Fourier transform (FFT) spectrometers. By measuring the atmospheric thermal radiance in the wide frequency band with 118, 190, 240, and 643 GHz as the center frequency, the required volume mixing ratio (VMR) of atmospheric chemical species can be obtained. This paper introduces the characteristics of the TALIS instrument, and establishes a simulation model for the TALIS spectrometer. Through a joint simulation with an atmosphere radiative transfer simulator (ARTS), the TALIS instrument performance is evaluated from the aspects of calibration, the imbalance of two sidebands, the spectrum resolution, and quantization. The simulation results show that the two-point calibration can well-restore the radiance spectrum of the scene target and remove the influence of the spectral response function (SRF); the double side band (DSB) receiver with a 2 MHz resolution can meet the sensitivity and spectrum resolution requirements. Finally, the sensitivity errors of different quantization bits are given by the simulation and the results show that at 8-bit, the sensitivity and its degradation ratio are 1.251 K and 1.036 at a 2 MHz spectrum resolution and 100 ms integration time, respectively.
机译:太赫兹大气肢体发声器(TALIS)是由中国科学院国家空间科学中心开发的一种微波辐射计,用于探测大气中的痕量气体。该仪器的观测范围主要集中在中层和高层大气(地球表面上方10-100 km)。检测目标包括温度,压力和十多种大气成分。其科学目标是提高我们对大气化学成分和动力学的理解,并监测环境污染和大气源。 TALIS仪器由天线,超外差辐射计和数字快速傅里叶变换(FFT)光谱仪组成。通过在以118、190、240和643 GHz为中心频率的宽频带上测量大气热辐射,可以获得所需的大气化学物质的体积混合比(VMR)。本文介绍了TALIS仪器的特点,并建立了TALIS光谱仪的仿真模型。通过与大气辐射传输模拟器(ARTS)的联合仿真,可从校准,两个边带不平衡,频谱分辨率和量化等方面评估TALIS仪器的性能。仿真结果表明,两点校准可以很好地恢复场景目标的辐射光谱,消除光谱响应函数(SRF)的影响。分辨率为2 MHz的双边带(DSB)接收机可以满足灵敏度和频谱分辨率的要求。最后,通过仿真给出了不同量化位的灵敏度误差,结果表明,在8位时,在2 MHz频谱分辨率和100 ms积分时间下,灵敏度及其降级比分别为1.251 K和1.036。

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