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1)  ECG algorithm
心电算法
2)  Centroid algorithm
质心算法
1.
The results of simulation achieved by C++ demonstrate show that the weight centroid algorithm has a better accuracy.
为进一步提高精度,采用了求质心和加权质心的方法,并用C++实现仿真比较,仿真结果表明:加权质心算法具有较高的精度,整个定位过程中节点间无需额外的通信开销,具有广泛的实用性。
2.
Based on the application of wireless sensor network,this paper put forward a novel method of a self-adaptive grade positioning algorithms which adopt an idea of event-driven and combine the method of centroid algorithm and Dv-Hop algorithm.
本文基于应用,采用事件触发机制,融合了两种已有的无线传感器网络节点自定位算法:质心算法和Dv-Hop算法,提出了一种自适应分级定位算法。
3.
The inference of anchors to unknown nodes and centroid algorithm are included.
该算法结合了anchors对未知节点的影响因子和质心算法。
3)  greedy algorithm
贪心算法
1.
Behavior analysis of electricity trade using transportation problem and greedy algorithm;
应用运输问题和贪心算法的电力交易行为分析
2.
The Method of the Downlink of Science Satellite Based on Greedy Algorithm;
基于贪心算法的科学卫星下行传输规划
3.
Design of greedy algorithm about interest arbitrage;
套利问题的贪心算法设计
4)  core algorithm
核心算法
1.
The Core Algorithm and the Implementation Technique in Chinese Intelligent Input Method Based on Grammar and Semantics;
汉字语法语义智能输入法核心算法及实现技术
2.
Study and Implementation of M×N Core Algorithm for PPC under CIM;
CIM环境下PPC中M×N核心算法的研究与实现
3.
In order to help the management group of a company to mine data according to different business requirements and make decisions based on the rules that come from data mined, the authors present a core algorithm, which is based on the theory of data warehouse, rough set method, etc.
为了使企业的管理层能够根据市场需求进行数据挖掘,并基于挖掘出来的规则做出决策,在数据仓库、粗糙集方法等理论的基础上提出了一种核心算法,应用于商业数据挖掘。
5)  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。
6)  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 subpixel 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。
补充资料:额面心电向量图


额面心电向量图


空间心向量环投影在额面上,形成额面心电向量图,而其投影在肢导上,就形成肢导心电图。额面QRS心电向量环,常呈狭长形,多为顺钟向运行,最大向量方位在+10°~65°之间 (向左下方)。一般地说,额面QRS向量环与Ⅲ导联垂直,所以Ⅲ导联的心电图波形变化较大。
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