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宽波段高分辨率小型紫外成像光谱仪光学系统研究 总被引:1,自引:0,他引:1
结合小型紫外光谱仪器设计原理对紫外成像光谱仪进行了研究。以离轴抛物镜为望远镜,超环面光栅为成像光谱系统设计了系统方案;该光学系统的优化设计就是对超环面光栅的参数设计。分析了光栅的光程函数和像差方程,总结了单超环面光栅结构的完善聚焦条件和完善成像条件;这两种条件无法在代数计算下得到完善代数解,限制了光谱仪的工作波段和视场,引入遗传算法解决了这个问题。以一工作波段为200~280 nm的日盲紫外成像光谱仪为例对设计理论进行验证,根据优化理论计算了初始结构最优解并进行光线追迹模拟,成功得到了F数为5.7,焦距为102 mm,全视场全波段调制传递函数值在奈奎斯特频率(20 lp·mm-1)下大于0.65的高分辨率成像光谱仪光学系统。设计结果表明这种光学系统设计理论适用于小型宽波段高分辨率紫外成像光谱仪。 相似文献
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提出了一种正弦调制多光束激光外差二次谐波测量微冲量的新方法,将激光与工质靶作用产生的微冲量转化为扭摆的转动角度测量,基于激光外差技术和多普勒效应,把待测转角信息加载到外差信号的频率差中,经信号解调后可以得到待测转角值,通过多次测量取平均值的方法可以提高待测转角的测量精度,从而提高微冲量的测量精度。利用这种新方法,以PVC+2%C为工质靶,利用MATLAB仿真测量了激光与工质靶作用产生的微冲量,结果表明:该测量的最大相对误差小于0.8%。 相似文献
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A method of measuring micro-impulse with torsion pendulum based on multi-beam laser heterodyne 下载免费PDF全文
In this paper, we propose a novel method of multi-beam laser heterodyne measurement for micro-impulse. The measurement of the micro-impulse, which is converted into the measurement of the small tuning angle of the torsion pendulum, is realized by considering the interaction between pulse laser and working medium. Based on Doppler effect and heterodyne technology, the information regarding the small tuning angle is loaded to the frequency difference of the multi-beam laser heterodyne signal by the frequency modulation of the oscillating mirror, thereby obtaining many values of the small tuning angle after the multi-beam laser heterodyne signal demodulation simultaneously. Processing these values by weighted-average, the small tuning angle can be obtained accurately and the value of the micro-impulse can eventually be calculated. Using Polyvinylchlorid+2%C as a working medium, this novel method is used to simulate the value of the micro-impulse by MATLAB which is generated by considering the interaction between the pulse laser and the working medium, the obtained result shows that the relative error of this method is just 0.5%. 相似文献
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研究了用于相干激光测风雷达信号接收的平衡式探测接收技术.推导出了平衡式相干探测过程的数学模型和信噪比表达式,并通过仿真软件对该模型进行了模拟仿真.在同等输入条件下,当平衡式相干探测系统的最佳分束比范围在[0.293,0.707]时,其信噪比比普通相干探测的信噪比高.此外,平衡式探测接收还具有判断风向的功能,最后通过实验验证了仿真结果. 相似文献
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