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1)  graph entropy
图熵
1.
Social Network Evolution Analysis Based on Graph Entropy
基于图熵的社会网络演化分析
2.
According to the expert knowledge in the money laundering field, this paper gives a model of impact factors and an algorithm of link discovery based on graph entropy.
本文结合反洗钱领域的专家知识实现了一个基于图熵的影响因子模型,并给出了一个链接发现的算法。
2)  entropic graph
熵图
1.
In this work,some color invariance is derived from color model as the object recognition feature,and the HP affinity estimated by entropic graphs is used as the object similarity measure.
依据光照模型推导出与环境光照无关的颜色不变量,并将其作为目标识别的特征,利用熵图估计出的特征向量的HP相似度作为相似性评价标准进行目标识别。
3)  enthalpy-entropy figure
焓熵图
1.
The fundamental conceptions ahout enthalpy and entropy are introduced first,then we discuss the applications of the pressure-enthalpy figure and enthalpy-entropy figure in refrigeration and thermoelectric engineering.
在介绍焓和熵的基本概念的基础上,论述了压焓图和焓熵图在致冷和热电工程中的应用。
4)  image entropy
图像熵
1.
Color image segmentation and edge detection using Unit-Linking PCNN and image entropy
Unit-Linking PCNN和图像熵的彩色图像分割与边缘检测
2.
Based on the analysis,a new method was proposed for DAN estimation in spaceborne SAR imaging by finding the minimum of image entropy or the ma.
分析表明,基于图像均方差的DAN估计优于图像熵的DAN估计,前者在成像区域场景反差较大和较小时均适用,而后者在成像区域场景反差较小时表现不稳定。
3.
In order to solve this problem,the fast selection algorithm was proposed from different aspects: Firstly,for luminance mode selection,the method was proposed that utilizes the image entropy value to predict the mode of the macroblock,and updates the threshold adaptively by a sl.
针对亮度块的模式选择过程,提出了基于图像熵值和滑动窗口机制自适应地调整熵值阈值的方法对宏块模式进行预判;针对亮度模式中多个预测方向的选择,充分利用中间结果,预先排除一些可能性小的预测方向;在亮度块和色度块相结合的率失真统计中,改变算法结构,预先计算色度块最佳模式。
5)  temperature-entropy figure
温-熵图
6)  T-S diagram
温熵图
1.
The isobar curves and isenthalpic curves as well as the phase equilibrium curve formulated from the calculation results are presented in this T-S diagram.
该温熵图比较直观地反映了混合物的基础物性特征, 使对混合物制冷工质的热力循环分析更加方便直观。
2.
Concise formula for calculating entropy of ideal gas are given,isobars and isochore on T-S diagram is discussed.
导出理想气体的熵与状态参量之间的一种简明关系 ,由此可知温熵图上的等容线和等压线形状。
补充资料:温熵图
分子式:
CAS号:

性质:以温度和熵分别为纵坐标和横坐标的状态图。此图中曲线下方的面积代表系统在可逆过程中吸收的热,即QR=∫ TdS。

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