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1)  line source superposition
线源叠加
2)  stacked source
叠加震源
1.
The excitation adopted the direction stacked source and the excitation factor was chosen scientifically.
激发技术采用了定向叠加震源和科学地选择激发因素的技术方法 ;接收方面采用提高耦合谐振的方法和使用新型的加速度检波器 ;压噪方面形成了一套有针对性的独特的压噪技术。
3)  source model in an added way
光源叠加
4)  adding curved line
叠加曲线
1.
U sing a method of adding curved lines and adjusting install mode of the pad-roller, we also can get shape curve equations of the roller body and an effect of even pad rolling.
均匀轧辊可获得均匀及不同形状的轧点连线,利用叠加曲线的方法,得出轧辊辊体的轮廓曲线方程,通过对轧辊安装方式的调整,可获得均匀轧辊的效果。
5)  linear stacking
线性叠加
1.
A model algorithm control is proposed by using dynamic matrix controlled algorithm based on linear stacking The stability of a system and its dynamic response are analyzed The analysis results are verified by simulation A new method is presented for controlling MAC predictio
基于线性叠加原理 ,借鉴动态矩阵制算法 ,提出了一种改进的模型算法控制 ,分析了系统的稳定性与动态响应问题 ,通过仿真验证了分析结果。
6)  linear superposition
线性叠加
1.
In this paper,a adjustment factor α(m) has been introduced to define the linear superposition feedback,and the computation amount of the algorithm has been greatly decreased by using simple correlation operation in stead of the complicated LLR operation in the conventional product iterative decoding.
算法对多维乘积码实施turbo迭代译码时,通过校正因子α(m)的引入定义了线性叠加反馈,从而用简单的相关运算代替了传统乘积码迭代译码中复杂的LLR运算,降低了译码复杂度。
2.
In this paper,based on the analysis of the characteristics of the KdV-Burgers equation and KdV-Burgers-Kuramoto equation,a method is presented to construct the exact solutions for the KdV-Burgers equation and KdV-Burgers-Kuramoto equation from those of the Burgers equation together with KdV equation and KdV equation together with Kuramoto-Sivashinsky equation by linear superposition.
基于对KdV-Burgers方程和KdV-Burgers-Kuramoto方程特点的分析,提出了一种由Burgers方程的解和KdV方程的解通过线性叠加构造KdV-Burgers方程的解以及由KdV方程的解和Kuramoto-Sivashinsky方程的解通过线性叠加构造KdV-Burgers-Kuramoto方程的解的方法,并用该法求得了KdV-Burgers方程和KdV-Burgers-Kuramoto方程的若干精确解。
3.
In view of the fact that the peak area ratio and peak height ratio,which is used to calculate the productivity contribution of commingled producing wells at present,do not follow the linear superposition theory,the quantification of GC fingerprint compound is difficult.
针对目前合采井单层贡献率定量计算中采用峰面积(或峰高)比值不具线形叠加及多层配比实验工作量的繁重性,基于浓度线性叠加理论,以单层化合物质量浓度和合采油层指纹峰面积(或峰高)比值进行建模,再采用求得全局最小值较好的模拟退火算法进行优化,求得单层产能贡献率。
补充资料:X线源


X线源


X线成像设备的元件之一。X线发生装置。医用X线源具有三个主要特征:①可提供高能量,可提供X线摄影需要的必要的光子量。②点源,X线源(焦点)的截面积宜尽可能的小,为一“点源”。③可提供尽可能窄的X线光谱,当然理想的应提供单一能量光谱(单色光),但事实上是不可能的。X线源提供的由单一能量级的光子构成的X线束称单色光,由不同能量级的光子构成的X线束称多色光。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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