会议论文详细信息
4th International Conference on Advanced Composites and Materials Technologies for Arduous Applications
A mathematical model of the inline CMOS matrix sensor for investigation of particles in hydraulic liquids
Kornilin, D.V.^1 ; Kudryavtsev, I.A.^1
Laboratory 16, Radioelectronic Methods and Devices for Diagnostic of Aircraft Systems, Samara University, Samara
443086, Russia^1
关键词: Automatic particle counter;    Computational algorithm;    High pressure;    Hydraulic system;    Light emitting diode (LED);    Liquid channels;    Matrix sensor;    Particle shape;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/153/1/012007/pdf
DOI  :  10.1088/1757-899X/153/1/012007
来源: IOP
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【 摘 要 】

One of the most effective ways to diagnose the state of hydraulic system is an investigation of the particles in their liquids. The sizes of such particles range from 2 to 200 gm and their concentration and shape reveal important information about the current state of equipment and the necessity of maintenance. In-line automatic particle counters (APC), which are built into hydraulic system, are widely used for determination of particle size and concentration. These counters are based on a single photodiode and a light emitting diode (LED); however, samples of liquid are needed for analysis using microscope or industrial video camera in order to get information about particle shapes. The act of obtaining the sample leads to contamination by other particles from the air or from the sample tube, meaning that the results are usually corrupted. Using the CMOS or CCD matrix sensor without any lens for inline APC is the solution proposed by authors. In this case the matrix sensors are put into the liquid channel of the hydraulic system and illuminated by LED. This system could be stable in arduous conditions like high pressure and the vibration of the hydraulic system; however, the image or signal from that matrix sensor needs to be processed differently in comparison with the signal from microscope or industrial video camera because of relatively short distance between LED and sensor. This paper introduces mathematical model of a sensor with CMOS and LED, which can be built into hydraulic system. It is also provided a computational algorithm and results, which can be useful for calculation of particle sizes and shapes using the signal from the CMOS matrix sensor.

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