1) uniform difference subdivision
均差细分
2) error averaging
误差均分
1.
The algorithm adopts variable-scale searching and error averaging techniques to train the weight of the network,and(converts) weight training problem into optimization searching in multi parameters space.
该方法采用误差均分的变尺度搜索技术来训练网络权值,将网络权值的训练转化为多参数空间的寻优问题。
3) Difference of Mean Values of The Blocks
分块均差
4) differential equalization
差分均衡
5) even division
均匀细分
1.
The realize of stepping motor chopping wave constant current even division circuit base on 80C196MC;
基于80C196MC的步进电机斩波恒流均匀细分电路的实现
2.
Through the reasonable selection of division electric current waveform of phase winding for stepper motor, it presents and introduces the drive scheme of chopping wave constant current and even division based on AT89C51 chip microcomputer and the relative technique.
通过合理选择步进电机相绕组细分电流波形 ,提出并介绍了基于 AT89C5 1单片机控制的斩波恒流均匀细分驱动方案及实现技
3.
By selecting reasonable division electric current waveform of phase winding for step motor, the paper advances and introduces the drive scheme of chopping wave constant current and even division based on control of AT89C51 single chip microcomputer, and discusses how to realize the scheme.
通过合理选择步进电机相绕组细分电流波形 ,提出并介绍了基于AT89C5 1单片机控制的斩波恒流均匀细分驱动方案及实现技
6) interpolation error
细分误差
1.
The quartering deviation of Moiré fringe of a rotary encoder is the most important part in interpolation error.
高精度光电轴角编码器中的细分是误差的主要来源,而细分误差中莫尔条纹光电信号的正交性偏差影响最大。
2.
The system can get the signal waveform parameters from the harmonic components of radius vector deviation,plot a curve of interpolation error by delivering magnified moiré fringe photoelectric signal to computer with digital acquisition board.
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。
3.
The quartering deviation is the most important part in interpolation error.
高精度光电轴角编码器细分误差中莫尔条纹光电信号的正交性偏差影响最大。
补充资料:肺泡-动脉血氧分压差
肺泡-动脉血氧分压差
053kPa
指肺泡气氧分压和动脉血氧分压间的差值,是判断肺换气功能的一个主要指标。正常成人动脉血PO2约12.93kPa,而平均肺泡PO2约13.46kPa,因此肺泡和动脉血间氧分压存在轻微差别(0.53kPa)。在无效腔增加的情况下,其氧分压差将增大。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条