以L issa jou图形计算法为基础,用向径偏差来表征图形形状偏差,分析了向径偏差与信号波形参数之间的关系,设计了编码器动态细分误差快速评价系统.该系统可以利用数据采集卡,将放大后的莫尔条纹光电信号送入计算机,由向径偏差的谐波成分...以L issa jou图形计算法为基础,用向径偏差来表征图形形状偏差,分析了向径偏差与信号波形参数之间的关系,设计了编码器动态细分误差快速评价系统.该系统可以利用数据采集卡,将放大后的莫尔条纹光电信号送入计算机,由向径偏差的谐波成分得到信号波形参数,绘出细分误差曲线.该系统具有快速、简便的优点,对测试环境及编码器运行速度无严格要求,可以用于高精度光电轴角编码器动态细分误差的快速评估.展开更多
The dyadic Green’s function in multi-layer structures for Maxwell equations is a key component for the integral equation method,but time consuming to calculate.A novel algorithm,the Fast Interpolation and Filtering A...The dyadic Green’s function in multi-layer structures for Maxwell equations is a key component for the integral equation method,but time consuming to calculate.A novel algorithm,the Fast Interpolation and Filtering Algorithm(FIFA),for the calculation of the dyadic Green’s function in multi-layer structures is proposed in this paper.We discuss in specific details,ready for use in practical calculations of scattering in layer media,how to apply FIFA to calculate various components of the dyadic Green’s function.The algorithm is based on two techniques:interpolation of Green’s function both in the spectral domain and spatial domain,and low pass filter window based acceleration.Compared to the popular Complex Image Method(CIM),FIFA provides the same speed and overcomes several difficulties associated with CIM while being more general and robust.Specifically,there are no limitations on the frequency range,the number of layers in the structure and the type of Green’s functions to be calculated,and moreover,no need to extract surface wave poles from the spectral form of the Green’s function.Numerical results are given to demonstrate the efficiency and robustness of the proposed method.展开更多
文摘以L issa jou图形计算法为基础,用向径偏差来表征图形形状偏差,分析了向径偏差与信号波形参数之间的关系,设计了编码器动态细分误差快速评价系统.该系统可以利用数据采集卡,将放大后的莫尔条纹光电信号送入计算机,由向径偏差的谐波成分得到信号波形参数,绘出细分误差曲线.该系统具有快速、简便的优点,对测试环境及编码器运行速度无严格要求,可以用于高精度光电轴角编码器动态细分误差的快速评估.
文摘The dyadic Green’s function in multi-layer structures for Maxwell equations is a key component for the integral equation method,but time consuming to calculate.A novel algorithm,the Fast Interpolation and Filtering Algorithm(FIFA),for the calculation of the dyadic Green’s function in multi-layer structures is proposed in this paper.We discuss in specific details,ready for use in practical calculations of scattering in layer media,how to apply FIFA to calculate various components of the dyadic Green’s function.The algorithm is based on two techniques:interpolation of Green’s function both in the spectral domain and spatial domain,and low pass filter window based acceleration.Compared to the popular Complex Image Method(CIM),FIFA provides the same speed and overcomes several difficulties associated with CIM while being more general and robust.Specifically,there are no limitations on the frequency range,the number of layers in the structure and the type of Green’s functions to be calculated,and moreover,no need to extract surface wave poles from the spectral form of the Green’s function.Numerical results are given to demonstrate the efficiency and robustness of the proposed method.