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基于连续式旋转波片调制的傅里叶解调方法研究
其他题名Research on Fourier Demodulation Method Based on Continuous Rotating Waveplate Modulation
林哲宇
学位类型硕士
导师徐稚 ; 刘海东
2023-07-01
学位授予单位中国科学院大学
学位授予地点北京
学位专业电子信息
关键词偏振测量 偏振调制 偏振解调 傅里叶解调
摘要偏振辐射测量是获得天体物理状态的一种重要手段,光源或传播路径的各向异性是导致偏振产生的主要机制,因此偏振辐射可以提供有关天体磁场或辐射场等矢量场的重要信息。在太阳实测物理中,利用某些原子谱线进行高精度偏振辐射测量是目前探测太阳矢量磁场的主要手段。当我们对太阳磁场进行偏振测量时,涉及到偏振调制和偏振解调两个过程。偏振调制目的是将偏振信号调制进入可观测的强度信号,主要由偏振分析器实现。而针对不同科学目标,偏振分析器的类型也不尽相同,其中的偏振调制器或采用旋转波片或控制可变液晶波片来实现偏振信号调制。偏振解调则是从观测到的强度信号中还原出偏振信号的过程。 当采用旋转波片作为偏振调制器的时候,根据旋转方式不同分为步进式调制模式和连续式调制模式,连续式调制模式由于时间分辨率较高而被广泛采用。目前“双光束+连续式”的调制方案是国际上比较主流的偏振测量方案。故而本文主要对偏振测量中连续式旋转波片调制模式下的解调方式进行研究,研究的主要成果和结论为:(1)推导连续式调制模式下的傅里叶解调公式,利用数值仿真模拟该解调过程,对比解调信号与输入信号之间的残差,验证了傅里叶解调公式的正确性。(2)利用模拟仿真,定量分析傅里叶解调和矩阵解调在连续式调制常见误差作用下的解调性能,本工作分析的误差包括了波片初始方位角误差、波片定位精度误差和波片旋转与相机不匹配误差,分析发现两者的解调性能基本一致,并在文中给出了高精度连续式调制要求下的误差范围。在解调性能分析过程中,同时考虑了波片延迟量和调制次数对偏振效率的影响,采用了连续式调制的优化波片延迟量和适当调制次数。(3)结合FASOT偏振分析器的实验室装调开展了系列相关的实测。利用光强法计算出了其定标单元中4个偏振片透过轴之间的实际夹角及其所购置的商业波片的实测延迟量。
其他摘要Polarized radiometry is an important means to obtain the physical state of astrophysical objects. The anisotropy of the light source or propagation path is the main mechanism leading to the generation of polarization. Therefore, polarized radiation can provide important information about vector fields such as the magnetic field or radiation field of astronomical objects. In the physics of solar measurement, using certain atomic spectral lines to measure high-precision polarized radiation is the main means to detect the solar vector magnetic field at present. When we measure the polarization of the solar magnetic field, two processes of polarization modulation and polarization demodulation are involved. The purpose of polarization modulation is to modulate the polarization signal into an observable intensity signal, which is mainly realized by the polarization analyzer. For different scientific objectives, the types of polarization analyzers are also different, and the polarization modulator either uses a rotating wave plate or controls a variable liquid crystal wave plate to realize polarization signal modulation. Polarization demodulation is the process of recovering the polarization signal from the observed intensity signal.When a rotating wave plate is used as a polarization modulator, it can be divided into a step modulation mode and a continuous modulation mode according to different rotation modes. The continuous modulation mode is widely used due to its high time resolution. At present, the "dual beam + continuous" modulation scheme is the mainstream polarization measurement scheme in the world. Therefore, this paper mainly studies the demodulation method in the continuous rotating wave plate modulation mode in polarization measurement. The main results and conclusions of the research are as follows:(1) Deduce the Fourier demodulation formula under the continuous modulation mode, use numerical simulation to simulate the demodulation process, compare the residual error between the demodulated signal and the input signal, and verify the correctness of the Fourier demodulation formula .(2) Use simulation to quantitatively analyze the demodulation performance of Fourier demodulation and matrix demodulation under the action of common errors in continuous modulation. The errors analyzed in this work include the initial azimuth error of the wave plate and the positioning accuracy error of the wave plate It is found that the demodulation performance of the two is basically the same, and the error range under the requirement of high-precision continuous modulation is given in the paper. In the process of demodulation performance analysis, the effects of wave plate retardance and modulation times on polarization efficiency are considered at the same time, and the optimized wave plate retardance and appropriate modulation times of continuous modulation are adopted.(3) A series of related actual measurements were carried out in combination with the laboratory adjustment of the FASOT polarization analyzer. The actual included angle between the transmission axes of the four polarizers in the calibration unit and the measured retardation of the purchased commercial wave plate are calculated by using the light intensity method.
学科领域天文学
学科门类理学 ; 理学::天文学
页数0
语种中文
文献类型学位论文
条目标识符http://ir.ynao.ac.cn/handle/114a53/26418
专题光纤阵列太阳光学望远镜研究组
作者单位中国科学院云南天文台
第一作者单位中国科学院云南天文台
推荐引用方式
GB/T 7714
林哲宇. 基于连续式旋转波片调制的傅里叶解调方法研究[D]. 北京. 中国科学院大学,2023.
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