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Error analysis and optimization design of wide spectrum AOTF's optical performance parameter measuring system

机译:广谱AOTF光学性能参数测量系统的误差分析与优化设计

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As a new type of light dispersion device, Acousto-Optic Tunable Filter (AOTF) based on the acousto-optic interaction principle which can achieve diffractive spectral, has rapidly developed and been widely used in the technical fields of spectral analysis and remote sensing detection since it launched. The precise measurement of AOTF's optical performance parameter is the precondition to ensure spectral radiometric calibration and data inversion in the process of quantitation for spectrometer based on AOTF. In this paper, a kind of AOTF performance analysis system in 450~3200nm wide spectrum was introduced, including the fundamental principle of the basic system and the test method of the key optical parameters of AOTF. The error sources and the influence of the magnitude of the error in the whole test system were analyzed and verified emphatically. The numerical simulation of the noise in detecting circuit and the instability of light source was carried out, and based on the simulation result, the method for improving the measuring accuracy of the system were proposed such as improving light source parameters, correcting and changing test method by using dual light path detecting, etc. Experimental results indicate that: the relative error can be reduced by 20%, and the stability of the test signal is better than 98%. Finally, this error analysis model and the potential applicability in other optoelectronic measuring system were also discussed in the paper.
机译:作为一种新型的光散射装置,基于声光相互作用原理的可实现衍射光谱的声光可调滤光片(AOTF)得到了迅速的发展,并从那时起在光谱分析和遥感检测技术领域得到了广泛的应用。它发射了。精确测量AOTF的光学性能参数是在基于AOTF的光谱仪定量过程中确保光谱辐射度校准和数据反转的前提。本文介绍了一种在450〜3200nm宽光谱范围内的AOTF性能分析系统,包括基本系统的基本原理和AOTF关键光学参数的测试方法。着重分析和验证了整个测试系统中的误差来源和误差幅度的影响。对检测电路中的噪声和光源的不稳定性进行了数值模拟,并在仿真结果的基础上,提出了改善系统测量精度的方法,如改善光源参数,校正和改变测试方法等。实验结果表明:相对误差可降低20%,测试信号的稳定性优于98%。最后,本文还讨论了该误差分析模型以及在其他光电测量系统中的潜在适用性。

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