Offset temperature monitoring alarm system for fig plantation based on non-linear compensation
A technology of nonlinear compensation and alarm system, which is applied in the field of monitoring systems, can solve the problems of large errors in the temperature monitoring system, and achieve the effects of improving accuracy, accurate monitoring, and improving monitoring effects
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2017-01-04
- Estimated Expiration
- Not applicable · inactive patent
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Abstract
Description
technical field
[0001] The invention relates to a monitoring system, in particular to an offset temperature monitoring and alarm system for planting figs based on nonlinear compensation. Background technique
[0002] Figs are rich in nutrients such as amino acids, organic acids, magnesium, manganese, copper and vitamins, and are deeply loved by people. With the development of greenhouse planting technology, figs have been planted in greenhouses. If figs are planted in greenhouses, the yield of figs will increase, and the fruit will be larger and the juice will be more. Because figs are not cold-resistant and have high temperature requirements, a temperature monitoring system is usually used to monitor the temperature in the greenhouse when planting in a greenhouse. When the temperature is too low, the greenhouse needs to be heated in time to ensure the normal growth of figs. However, the existing temperature monitoring system is doped with a large noise signal in the signal...
Examples
Embodiment
[0019] Such as figure 1 As shown, the present invention is mainly composed of a temperature sensor G, a trigger switch circuit, a bias circuit and a non-linear compensation circuit respectively connected to the trigger switch circuit, an amplifier P1, a P pole connected to the temperature sensor G, and an N pole connected to the temperature sensor G through a resistance R3. The diode D1 connected to the output terminal of the amplifier P1, the positive pole is connected to the N pole of the diode D1, the negative pole is connected to the negative pole of the amplifier P1 after passing through the resistor R2, the N pole is connected to the output terminal of the amplifier P1, P Zener diode D2 whose pole is grounded after resistor R5, positive pole connected to the negative pole of capacitor C1 after resistor R1, capacitor C2 whose negative pole is connected to P pole of Zener diode D2, positive pole connected to the output of amplifier P1 after resistor R4 It consists of a cap...