The present application of neural network to sensing signal processing and principles on which this application based are discussed.
本文论述了神经网络在传感信号处理方面的应用,介绍了基本原理,举例说明应用方法。
In practice complex alternating projection neural networks can be widely applied to signal processing, such as band-limited signal extrapolation, frequency selector and trap filter.
实际上,复交替投影神经网络不仅可用于信号处理中的带限信号外推,还可用于选频、陷波等场合。
A novel optic fiber sensing array and suitable neural network signal processing techniques are described.
描述了一种新颖的光纤传感阵列和适宜的神经网络信号处理技术。
His research fields include signal detection, image processing, artificial neural networks, virtual testing, DSP applications.
研究领域包括信号检测、图像处理、人工神经网络、虚拟测试、DSP应用等。
In this paper, defects for NDT are classified with neural network which USES features extracted from signal processing. Then classification results from networks are fused with fuzzy integral.
在无损检测信号处理和特征构造的基础上,用神经网络对缺陷进行识别,然后运用模糊积分对多个神经网络的分类结果进行融合。
Because fuzzy neural network is simple and practical, it has been widely used in industrial process control, signal processing and other fields.
模糊神经网络由于其简单实用,已被广泛用于工业过程控制、信号处理等领域。
Neural cell produced signal when the result from processing all of input information is lager than a limited value.
只有当神经元对所有的输入信号的综合处理结果超过某一阈值后才输出一个信号。
Artificial neural network is used widely in the signal processing.
人工神经网络在信号处理方面得到了广泛应用。
In terms of characters of artificial neural networks and signal transmitting and processing, a point of view on communication channel based on physical neural networks was presented.
根据人工神经网络的结构特点和信息传输与处理特征,提出了利用物理神经网络作为通信信道的观点。
The loose part impact positions are located by analyzing signals from accelerometers mounted on the reactor vessel with signal pre processing, time frequency transforms, and neural networks.
通过对安装在反应堆压力壳上的多个加速度传感器的信号进行采集,并经过信号预处理、时频变换、神经网络计算等过程,实现对核电站松动件碰撞位置的定位。
The loose part impact positions are located by analyzing signals from accelerometers mounted on the reactor vessel with signal pre processing, time frequency transforms, and neural networks.
通过对安装在反应堆压力壳上的多个加速度传感器的信号进行采集,并经过信号预处理、时频变换、神经网络计算等过程,实现对核电站松动件碰撞位置的定位。
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