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模拟及处理
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The paper outlines an operationally oriented procedure for these purposes based on the simulation and processing of GPS carrier-phase observations.
      
These aspects are presently under investigation, namely with the help of GPS data simulation and processing with the aforementioned GPS softwares.
      


In the ventricular conduction structure model, the conduction system is a self similar fractal tree with branches. Based on this model, the QRS complex can be simulated. The power spectrum data are analyzed by linear regression and a linear equation with the large correlation coefficient ( r>0.9) has been obtained. The slope is dependent on the frequency content of the simulated QRS complex, and the power spectrum of the QRS complex should reflect the energy invertendo. The fractal feature is described quantitatively...

In the ventricular conduction structure model, the conduction system is a self similar fractal tree with branches. Based on this model, the QRS complex can be simulated. The power spectrum data are analyzed by linear regression and a linear equation with the large correlation coefficient ( r>0.9) has been obtained. The slope is dependent on the frequency content of the simulated QRS complex, and the power spectrum of the QRS complex should reflect the energy invertendo. The fractal feature is described quantitatively with fractal dimension, and that of ECG signals can be obtained. The fractal dimension is dependent on a given object. The difference between the results observed on a normal person and a patient show that the fractal dimension is almost the same, with only small variation among different resolutions. More information on ECG signals has been given by the mean fractal dimension and local fractal dimension. From these salient fractal features, the classification of ECG signals using the mean fractal dimension is obtained.

研究了分形理论在ECG信号模拟及处理上的应用,在心室树状结构传导模型的基础上,分析了模拟QRS波的功率反比特性;同时通过对ECG信号的分形研究,分析了给定对象的ECG信号的显著的分形特征,并由此得到ECG信号的分类方法

 
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