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1)  NEMS vector hydrophone
NEMS矢量水听器
2)  Vector hydrophone
矢量水听器
1.
Geoacoustic inversion from vector hydrophone array in shallow water;
由矢量水听器阵列反演浅海地声参数
2.
Design of a NEMS vector hydrophone based on thin film of quantum well;
基于量子阱薄膜的纳机电矢量水听器设计
3.
Multi-source DOA estimation using a modified WSF algorithm in a single vector hydrophone applications;
一种改进的WSF算法在单矢量水听器多目标方位估计中的应用
3)  vector sensor
矢量水听器
1.
Direction estimation of multi-sources received by a single vector sensor;
单矢量水听器多目标方位估计的算法研究
2.
Research on the spatial character of surface noise in shallow sea based on vector sensor
基于矢量水听器浅海波导中海面噪声场的空间特性研究
3.
The paper starts with vector hydrophone, circumfuses signal processing methods of vector sensor, applies technology of data fusion into.
矢量水听器由声压传感器和振速传感器融合而成,本身就具有多传感器的特性。
4)  acoustic vector sensor
矢量水听器
1.
A study of beam domain MVDR algorithm based on acoustic vector sensor array;
矢量水听器阵波束域MVDR方法研究
2.
Adaptive subspace tracking algorithm based on acoustic vector sensor array;
矢量水听器阵列自适应子空间跟踪算法
3.
The direction of the sound source relative to the receiver still can be obtained by acoustic vector sensor processing.
在某些场合,例如水下定位、编码通信,信号具有确知脉冲信号特性,声源相对于接收器的方位,可以采用矢量水听器处理来获得。
5)  single vector hydrophone
单矢量水听器
1.
Four approaches to DOA estimation based on a single vector hydrophone;
基于单矢量水听器四种方位估计方法
2.
A novel underwater acoustic receiving transducers—micro-electro-mechanical-system(MEMS) single vector hydrophone was designed and fabricated by means of theory of piezoresistive effect and MEMS technology.
依据压阻效应原理,利用微电子机械系统(MEMS)制作技术设计并制作出一种新型的水声接收换能器—MEMS单矢量水听器,期望利用敏感材料的压阻效应以及水听器精巧的微结构,实现矢量水听器的低频特性和小型化。
6)  Vector-hydrophone array
矢量水听器阵
1.
Each element of vector-hydrophone array measures the acoustic pressure and three orthogonal components of acoustic particle velocity in a sound field.
矢量水听器阵的每个阵元同时测量声场中的声压量和质点振速的3个正交分量,相对于声压水听器阵来说,矢量阵获取声场中更多的信息。
2.
The 180° ambiguity was removed using vector-hydrophone array.
结果表明,相对于声压阵,在不增加阵孔径的前提下,利用矢量水听器阵获得的波束主瓣更窄,旁瓣更低。
补充资料:[3-(aminosulfonyl)-4-chloro-N-(2.3-dihydro-2-methyl-1H-indol-1-yl)benzamide]
分子式:C16H16ClN3O3S
分子量:365.5
CAS号:26807-65-8

性质:暂无

制备方法:暂无

用途:用于轻、中度原发性高血压。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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