1) centroid algorithm
重心算法
1.
This paper proposes several improved CMOS analog circuits for neuro-fuzzy network,including Gaussian-like membership function circuit,minimization circuit,and a centroid algorithm defuzzier circuit without using division.
本文提出了可构成多规则模糊神经网络的CMOS模拟单元电路,包括:类Gauss型隶属度函数电路,电压求小电路和重心算法去模糊电路。
2.
This method transformed star location data with trail into approximately ideal star location data according to characteristic of star location with trail,and then used the centroid algorithm to calculate star location.
提出了一种有效的星像坐标提取方法,该方法根据星像拖尾的特点,通过对拖尾星像进行预处理使之接近理想的星像特征,然后采用重心算法提取其星像坐标。
2) barycenter algorithm
重心算法
1.
Treatment flow for video-image is presented,using AVI function to discompose frames,applying one-dimension maximum entropy algorithm in segmentation of image,employing barycenter algorithm to calculate object s movement track.
给出视频图像处理的基本流程和方法,利用AVI函数对视频图像逐帧分解,使用一维最大熵算法实现图像的分割,利用重心算法计算物体的运动轨迹。
2.
This method introduces a subpixel technique and adopts the barycenter algorithm to compute the barycenter of characteristic speckle, which can avoid the complex process of computing the correlation coefficient in digital speckle method; experimental distortion curve for the measured object can be obtained through the related formulas of displacement.
该方法引进了亚像素技术,采用重心算法计算特征斑的重心,避免了数字散斑相关法计算相关系数的繁复过程;应用位移和应变的有关公式,可以获得物体变形实验曲线。
3) center calculation method
重心估算法
4) multi-greedy algorithm
多重贪心算法
5) exact-gravity algorithm
精确重心算法
1.
The paper introduces the general methods to solve facility locati on and layout both at home and abroad,studies the center-of-gravity approach an d exact-gravity algorithm in logistics node location,and finally,the simulatio n solution of exact-gravity algorithm on single logistics node location is imple mented by the computer simulation technology.
首先介绍了国内外解决设施选址和布局问题的常用研究方法,其次研究了物流节点选址问题重心算法,并重点对精确重心算法进行了深入研究,最后利用计算机仿真技术实现了单一物流节点选址的精确重心仿真求解。
6) linear bar center algorithm
线性重心算法
补充资料:人口重心
人口重心
人口龙心特定地域内人口分布的平衡点。计算公式如下:一扮,x--子,一_扮,y一刁犷上式中,王、夕分别为人口重心的横坐标和纵坐标,x,y分别为把这一地区划分成无限小的各区域的横、纵坐标;dP为相应的人口数。在实际计算中,常用如下公式:一艺尸f姜x一厄户万一艺Pi,y一厄可‘其中,x,y、分别为各小区域中心点的经纬度;尸为相应区域的人口数;王、夕为人口重心点的经纬度。 人口重心是人口分布方式和变动的最简单表现,可以根据人口重心的变动情况分析人口分布的变动趋势。
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