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1)  chaotic oscillator
混沌振子
1.
Study on reliability of chaotic oscillator in weak signal detection;
混沌振子在微弱信号检测中的可靠性研究
2.
The Principle of Detecting Faint Characteristic Signal Based onChaotic Oscillator and its Application;
基于混沌振子的微弱特征信号检测原理及应用
3.
On weak signal detection in ship′s shaft-rate electromagnetic field based on chaotic oscillator
基于混沌振子列的微弱舰船轴频电磁场信号频率检测
2)  Chaos oscillator
混沌振子
1.
So chaos oscillator algorithm could be utilized to acquire degraded GPS signal.
由于混沌振子具有对周期信号敏感,对噪声免疫的特性,相轨迹会因为同频率周期信号发生明显改变。
3)  chaotic oscillators
混沌振子
1.
The interaction in two dimensional weakly coupled chaotic oscillators;
二维弱耦合混沌振子的相互作用
2.
On the basis of the characteristics of the Duffing equation s solutions, the chaotic oscillators are designed.
根据Duffing方程解的特性设计出混沌振子 ,利用混沌振子对噪声的免疫力和对小信号的敏感性对微弱信号进行检测 ,并将此方法应用于转子系统早期碰摩故障检测中 ,结果表明此方法简单、可行。
3.
It is a find that chaotic oscillators is sensitive to faint periodic small signal by introduction about chaotic Duffing equation and detection of theory, and it can detect the faint periodic small signal in strong noise background.
通过对混沌振子Duffing方程及其检测原理的介绍,发现混沌振子对周期小信号具有敏感特性,能够在强噪声环境下实现对微弱周期小信号的检测。
4)  chaotic vibrator filtering
混沌振子滤波
5)  chaotic oscillator system
混沌振子系统
1.
Analysis of the geometric characteristic quantity of the periodic solutions of the chaotic oscillator system and the quantitative detection of weak periodic signal;
混沌振子系统周期解几何特征量分析与微弱周期信号的定量检测
2.
For the seismic prospecting data with additive noise,it has been put up to deal with the data using the chaotic oscillator system.
针对地震勘探资料中存在加性强随机噪声干扰,已经提出用混沌振子系统处理的方法技术。
6)  chaos oscillators array
混沌振子阵列
1.
In order to improve the veracity and effectiveness of the early fault detection,the method of early detection method of weak fault signals with multi-character frequencies was proposed through array scan,by employing cross-correlation for denoising and building chaos oscillators array.
为了提高早期故障检测的准确性和有效性,提出了运用互相关去噪和构建混沌振子阵列,通过阵列扫描实现早期微弱故障的多个特征频率信号检测的方法。
补充资料:点振子振动和点电极振子振动
分子式:
CAS号:

性质:又称点振子振动和点电极振子振动。振动能量绝大部分集中在点电极范围内,形成“能量封闭”的振动模式。振子电极面远小于压电陶瓷片的总面积,且与厚度有适宜的匹配关系。在交变电场作用下,沿厚度方向产生振动,其振幅随着至电极中心距离的增加,呈指数式衰减。谐振频率与压电陶瓷片的厚度有关。为提高频率通常将压电陶瓷片磨得很薄,有时考虑到压电陶瓷自身强度太低,可用特制的陶瓷片作垫片来防止压电陶瓷片损坏。常用于高频场合。

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