Barbero Sergio, Thibos Larry N
Indiana University, School of Optometry, Bloomington, Indiana 47405-3907.
Opt Eng. 2006;45(9):94001. doi: 10.1117/1.2352732.
Wavefront reconstruction from the transport-of-intensity equation (TIE) is a well-posed inverse problem given smooth signals and appropriate boundary conditions. However, in practice experimental errors lead to an ill-condition problem. A quantitative analysis of the effects of experimental errors is presented in simulations and experimental tests. The relative importance of numerical, misalignment, quantization, and photodetection errors are shown. It is proved that reduction of photodetection noise by wavelet filtering significantly improves the accuracy of wavefront reconstruction from simulated and experimental data.
基于强度传输方程(TIE)的波前重建在信号平滑且边界条件合适的情况下是一个适定的逆问题。然而,在实际中,实验误差会导致问题病态。在模拟和实验测试中对实验误差的影响进行了定量分析。展示了数值误差、对准误差、量化误差和光电探测误差的相对重要性。结果证明,通过小波滤波降低光电探测噪声可显著提高从模拟数据和实验数据进行波前重建的精度。