采用蒙特卡洛方法(MCM)对平尺最小二乘直线度和最小条件直线度进行测量不确定度评估。通过与测量不确定度评定指南法(GUM)的评估结果进行比较发现,MCM评估出的最小二乘直线度和最小条件直线度的测量不确定度分别比GUM评估结果小0.028μm...采用蒙特卡洛方法(MCM)对平尺最小二乘直线度和最小条件直线度进行测量不确定度评估。通过与测量不确定度评定指南法(GUM)的评估结果进行比较发现,MCM评估出的最小二乘直线度和最小条件直线度的测量不确定度分别比GUM评估结果小0.028μm和0.026μm。在给定的0.05μm允差范围内,两种评估方法对直线度测量不确定度的评估均有效。统计检验采用了kolmogorov-smirnov检验法、jarque-bera检验法、normal probability plot图示法、偏度和峰度检验法。通过对两种不同定义直线度的测量模型进行统计检验分析发现,被测量分布函数与正态分布的峰度偏离是造成差异的主要原因。展开更多
Mixed-weight least-squares (MWLS) predictive control algorithm, compared with quadratic programming (QP) method, has the advantages of reducing the computer burden, quick calculation speed and dealing with the case in...Mixed-weight least-squares (MWLS) predictive control algorithm, compared with quadratic programming (QP) method, has the advantages of reducing the computer burden, quick calculation speed and dealing with the case in which the optimization is infeasible. But it can only deal with soft constraints. In order to deal with hard constraints and guarantee feasibility, an improved algorithm is proposed by recalculating the setpoint according to the hard constraints before calculating the manipulated variable and MWLS algorithm is used to satisfy the requirement of soft constraints for the system with the input constraints and output constraints. The algorithm can not only guarantee stability of the system and zero steady state error, but also satisfy the hard constraints of input and output variables. The simulation results show the improved algorithm is feasible and effective.展开更多
An all-fiber LP_(01)-LP_(11) mode convertor based on side-polished small-core single-mode fibers(SMFs) is numerically demonstrated. The linearly polarized incident beam in one arm experiences π shift through a fiber ...An all-fiber LP_(01)-LP_(11) mode convertor based on side-polished small-core single-mode fibers(SMFs) is numerically demonstrated. The linearly polarized incident beam in one arm experiences π shift through a fiber half waveplate, and the side-polished parts merge into an equivalent twin-core fiber(TCF) which spatially shapes the incident LP_(01) modes to the LP_(11) mode supported by the step-index few-mode fiber(FMF). Optimum conditions for the highest conversion efficiency are investigated using the beam propagation method(BPM) with an approximate efficiency as high as 96.7%. The proposed scheme can operate within a wide wavelength range from 1.3 μm to1.7 μm with overall conversion efficiency greater than 95%. The effective mode area and coupling loss are also characterized in detail by finite element method(FEM).展开更多
文摘采用蒙特卡洛方法(MCM)对平尺最小二乘直线度和最小条件直线度进行测量不确定度评估。通过与测量不确定度评定指南法(GUM)的评估结果进行比较发现,MCM评估出的最小二乘直线度和最小条件直线度的测量不确定度分别比GUM评估结果小0.028μm和0.026μm。在给定的0.05μm允差范围内,两种评估方法对直线度测量不确定度的评估均有效。统计检验采用了kolmogorov-smirnov检验法、jarque-bera检验法、normal probability plot图示法、偏度和峰度检验法。通过对两种不同定义直线度的测量模型进行统计检验分析发现,被测量分布函数与正态分布的峰度偏离是造成差异的主要原因。
基金National Key Basic Research and Development(No.2002CB312200)
文摘Mixed-weight least-squares (MWLS) predictive control algorithm, compared with quadratic programming (QP) method, has the advantages of reducing the computer burden, quick calculation speed and dealing with the case in which the optimization is infeasible. But it can only deal with soft constraints. In order to deal with hard constraints and guarantee feasibility, an improved algorithm is proposed by recalculating the setpoint according to the hard constraints before calculating the manipulated variable and MWLS algorithm is used to satisfy the requirement of soft constraints for the system with the input constraints and output constraints. The algorithm can not only guarantee stability of the system and zero steady state error, but also satisfy the hard constraints of input and output variables. The simulation results show the improved algorithm is feasible and effective.
基金supported by the Fundamental Research Funds for the Central Universities(No.2016JBM002)
文摘An all-fiber LP_(01)-LP_(11) mode convertor based on side-polished small-core single-mode fibers(SMFs) is numerically demonstrated. The linearly polarized incident beam in one arm experiences π shift through a fiber half waveplate, and the side-polished parts merge into an equivalent twin-core fiber(TCF) which spatially shapes the incident LP_(01) modes to the LP_(11) mode supported by the step-index few-mode fiber(FMF). Optimum conditions for the highest conversion efficiency are investigated using the beam propagation method(BPM) with an approximate efficiency as high as 96.7%. The proposed scheme can operate within a wide wavelength range from 1.3 μm to1.7 μm with overall conversion efficiency greater than 95%. The effective mode area and coupling loss are also characterized in detail by finite element method(FEM).