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梁卓玥【EN】Yang Bo
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1:
[发明]
【中文】基于仿生谐振毛发传感器的管道侧线阵列装置 【EN】Pipeline side line array device based on bionic resonance hair sensor
申请号:
201910955350.6
公开号:CN110850110A 主分类号:G01P5/14
申请人:
【中文】东南大学【EN】SOUTHEAST University
申请日:2019.10.09 公开日:2020.02.28
发明人:
【中文】杨波
;
梁卓玥
;
张婷【EN】Yang Bo
;
Liang Zhuoyue
;
Zhang Ting
摘要:【中文】本发明公开了一种基于仿生谐振毛发传感器的管道侧线阵列装置,该装置由四传感器平行阵列装置和外围管道罩两部分组成,四传感器平行阵列装置由四个仿生谐振毛发传感器平行相邻排布组成,外围管道罩为顶部有五个连通孔的矩形管道罩,管道侧线阵列装置可以将谐振器微弱的频率变化提取出来,实现对简谐气流的敏感。管道侧线阵列装置具有强抗干扰能力,高灵敏度和高信噪比等优点。 【EN】The invention discloses a pipeline side line array device based on a bionic resonance hair sensor, which consists of two parts, namely a four-sensor parallel array device and a peripheral pipeline cover, wherein the four-sensor parallel array device consists of four bionic resonance hair sensors which are arranged adjacently in parallel, the peripheral pipeline cover is a rectangular pipeline cover with five communicating holes at the top, and the pipeline side line array device can extract weak frequency changes of a resonator to realize sensitivity to simple harmonic gas flow. The pipeline side line array device has the advantages of strong anti-interference capability, high sensitivity, high signal-to-noise ratio and the like.
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2:
[发明]
【中文】基于仿生谐振毛发传感器的旋转阵列装置 【EN】Rotary array device based on bionic resonance hair sensor
申请号:
201910955369.0
公开号:CN110850111A 主分类号:G01P5/24
申请人:
【中文】东南大学【EN】SOUTHEAST University
申请日:2019.10.09 公开日:2020.02.28
发明人:
【中文】杨波
;
张婷
;
梁卓玥【EN】Yang Bo
;
Zhang Ting
;
Liang Zhuoyue
摘要:【中文】本发明公开了一种基于仿生谐振毛发传感器的旋转阵列装置,四传感器旋转阵列装置由四个仿生谐振毛发传感器旋转相邻排布组成,整体结构呈“田”字型,通过测量四个仿生谐振毛发传感器固有频率的变化,可以实现平面内任意方向流体的流速大小和方向的敏感。四传感器旋转阵列装置具有非常好的方向测量力,高信号增益,强抗干扰能力和高空间分辨能力。 【EN】The invention discloses a rotary array device based on bionic resonance hair sensors, wherein the four-sensor rotary array device is formed by rotationally and adjacently arranging four bionic resonance hair sensors, the whole structure is shaped like a Chinese character tian, and the sensitivity of the flow velocity and the direction of fluid in any direction in a plane can be realized by measuring the change of the inherent frequency of the four bionic resonance hair sensors. The four-sensor rotary array device has very good direction measuring force, high signal gain, strong anti-interference capability and high spatial resolution capability.
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