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1)  Choi-Williams energy distribution
Choi-Williams能量分布
1.
A new time-frequency signal analysis method for array acoustic logging signal data analysis,Choi-Williams energy distribution,based on local correlation distribution of signal energy between time and frequency domains was proposed in this paper.
对多极子阵列声波测井信号,提出了一种基于信号时、频局域相关能量的新的时-频信号分析方法,Choi-Williams能量分布,它有着较明确的物理意义。
2)  Choi-Williams distribution
Choi-Williams分布
1.
Using Choi-Williams distribution to extract feature from signal can effectively inhibit Wigner-Ville distribution s cross-terms,but meanwhile,decreast the aggregation of time-frequency.
利用Choi-Williams分布,可以有效地抑制上述存在的交叉项问题,但其时频聚集性有所下降。
2.
In this paper, the frequency characteristics of six cases of normal first and second heart sounds and one case of abnormal heart sound were analyzed by using wavelet transform and Choi-Williams distribution.
我们分别采用小波变换和Choi-Williams分布两种方法对六例正常第一、第二心音和一例异常心音的频率特性进行了研究。
3)  Choi-Williams time-frequency distribution
Choi-Williams 时频分布
1.
Based on the principle of Choi-Williams time-frequency distribution the relationship between fric- tion coefficient and friction-induced noise was analyzed.
基于 Choi-Williams 时频分布原理分析了试验过程中摩擦噪声的发生与摩擦系数的相关性,发现摩擦噪声信号与摩擦系数信号的 Choi-Williams 时频分布具有很好的一致性,并从摩擦学的角度初步探讨了摩擦噪声引发的机理。
4)  Choi Williams Distribution
Choi-Williams
5)  choi-Williams trispectrum
Choi-Williams三谱
6)  Choi-Williams transform
Choi-Williams变换
1.
The time-frequency characteristics ofs lift signals at different cavitating regimes were obtained by using Choi-Williams transform and wavelet analysis technique.
利用时频分析中的Choi-Williams变换和小波变换对水翼升力信号进行了分析处理,得到了水翼升力信号在不同空化阶段的时频特征。
补充资料:反应碰撞能量分布
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性质:是所有碰撞的麦克斯韦—玻尔兹曼能量分布函数乘以激发函数的积,并以dNR/NdER对正作图即得反应碰撞的能量分布曲线Ⅱ(图暂缺)。I线是所有碰撞的能量分布曲线σR是激发函数的曲线。据阿累尼乌斯活化能定义dlnk/dT=Ea/RT2可得 ,即阿累尼乌斯活化能是引起反应的所有碰撞的平均能量与所有碰撞的平均能量的差值。

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