Invention Grant
- Patent Title: Diode array-based digitized miniature ultra-low-power-consumption impact monitoring system
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Application No.: US15513857Application Date: 2015-11-16
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Publication No.: US10145746B2Publication Date: 2018-12-04
- Inventor: Lei Qiu , Shenfang Yuan , Qianyun Zheng , Hanfei Mei , Yuanqiang Ren , Qiao Bao
- Applicant: NANJING UNIVERSITY OF AERONAUTICS AND ASTRONAUTICS
- Applicant Address: CN Jiangsu
- Assignee: Nanjing University of Aeronautics and Astronautics
- Current Assignee: Nanjing University of Aeronautics and Astronautics
- Current Assignee Address: CN Jiangsu
- Agency: Masuvalley & Partners
- Priority: CN201510678150 20151020
- International Application: PCT/CN2015/094667 WO 20151116
- International Announcement: WO2017/067034 WO 20170427
- Main IPC: G01L5/00
- IPC: G01L5/00 ; G05B19/042 ; B64D45/00 ; B64F5/60

Abstract:
The present invention discloses a diode array-based digitized miniature ultra-low-power-consumption impact monitoring system, which belongs to the technical field of aircraft structural health monitoring. The impact monitoring system consists of a miniature sensor array interface, a passive band-pass filter array, a diode array, a digital conversion and management module, an on-board bus communication module, a monitoring data storage module, a self-powering module, and a miniature communication and power supply interface. According to the impact monitoring system, the amplitudes of impact response signals are controlled within a clamp voltage range of diodes by using the diode array, thereby realizing the first-stage digitization; and the second-stage digitization of the impact response signals is realized by using the digital conversion and management module consisting of a miniature field programmable gate array of ultra-low-power-consumption. The impact monitoring system can realize on-line, real-time and uninterrupted impact monitoring on large-scale aircraft structures, thereby improving the safety and maintenance efficiency of the aircraft structures.
Public/Granted literature
- US20170292880A1 DIODE ARRAY-BASED DIGITIZED MINIATURE ULTRA-LOW-POWER-CONSUMPTION IMPACT MONITORING SYSTEM Public/Granted day:2017-10-12
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