Self-adaptive closed-loop feedback control system and method for silicon resonance pressure sensor
A pressure sensor and closed-loop feedback technology, which is applied in the direction of generator vibration, output stability, electrical components, etc., can solve problems such as difficult to separate analog devices, increase the start-up time of silicon resonant closed-loop circuits, and fail to meet phase difference conditions, etc.
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Embodiment 1
[0071] like image 3 As shown, the present invention provides an adaptive closed-loop feedback control system for a silicon resonant pressure sensor, comprising a V / F conversion circuit, a silicon resonant pressure core connected to the V / F conversion circuit, and a silicon resonant pressure core connected to the V / F conversion circuit. A C / V circuit connected to the resonant pressure core, an adaptive feedback control module and a differentiator connected to the C / V circuit respectively, and an AGC circuit connected to the differentiator, the AGC circuit and the adaptive feedback control module connection;
[0072] The V / F conversion circuit is used to convert electrical signals into electrostatic force F e , to drive the silicon resonant pressure core to generate harmonic vibration;
[0073] The silicon resonant pressure core for receiving electrostatic force F e Drive to form harmonic vibration, resulting in displacement change x;
[0074] The C / V circuit is used to con...
Embodiment 2
[0124] like Figure 4 As shown, the present invention provides an adaptive closed-loop feedback control method for a silicon resonant pressure sensor, and its implementation method is as follows:
[0125] S1. Convert electrical signals into electrostatic force F e , to drive the silicon resonant pressure core to generate harmonic vibration;
[0126] S2, the silicon resonance pressure core is subjected to electrostatic force F e Drive to generate displacement change x;
[0127] S3. Convert the displacement change x into a voltage signal V;
[0128] S4, using proportional-integral operation and adaptive loop feedback control respectively, the control voltage signal V and the high-frequency carrier signal H form a -90° phase difference;
[0129] S5, perform differential operation on the voltage signal V, and adjust the dynamic characteristics of the adaptive closed-loop feedback control system;
[0130] S6. According to the differential operation result, the amplitude of the...
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