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Measuring method for soil moisture and electrical conductivity based on vectorial resultant and device thereof

A vector synthesis, soil moisture technology, applied in the field of measuring soil moisture and conductivity, can solve problems such as harm to health, poor stability, high price, etc., to improve sensitivity and accuracy, eliminate the effect of conductance, and easy to achieve.

Inactive Publication Date: 2012-05-09
HENAN AGRICULTURAL UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Karl Fischer method, which uses chemical reagents, pollutes the environment and endangers health; soil tension method, which is easily affected by the soil environment and has poor stability; drying method, which can cause organic matter to decompose, resulting in inaccurate test results; resistance method, soil salinity The existence of the resistance method can not really reflect the moisture content of the soil; the gamma ray method, the microwave method, and the neutron method have certain radiation, which will affect the health and the environment; the time domain reflection method is expensive and has not yet been popularized.

Method used

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  • Measuring method for soil moisture and electrical conductivity based on vectorial resultant and device thereof
  • Measuring method for soil moisture and electrical conductivity based on vectorial resultant and device thereof
  • Measuring method for soil moisture and electrical conductivity based on vectorial resultant and device thereof

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Embodiment 1

[0021] Such as figure 1 As shown, in the present invention, a method for measuring soil moisture and electrical conductivity based on vector synthesis uses the reference signal U0 to obtain a resistance-capacitance model signal U1 whose amplitude and phase can be changed through the soil signal acquisition module; The reference signal U0 is amplified and reversed to obtain the gain-adjustable reverse signal U2, and U2 is the conductance signal; the resistance-capacitance model signal U1 and the gain-adjustable reverse signal U2 are vector-combined through the vector synthesis module to obtain the capacitive component and the conductance component, the capacitance component represents the moisture content in the soil, and the conductance component represents the conductivity of the soil model.

[0022] In this method, the optional frequency of the reference signal U0 is 1 MHz, and the reference signal U0 is a sinusoidal signal.

[0023] Such as figure 2 Schematic diagram of ...

Embodiment 2

[0035] Such as figure 1 As shown, in the present invention, a method for measuring soil moisture and electrical conductivity based on vector synthesis uses the reference signal U0 to obtain a resistance-capacitance model signal U1 whose amplitude and phase can be changed through the soil signal acquisition module; The reference signal U0 is amplified and reversed to obtain the gain-adjustable reverse signal U2, and U2 is the conductance signal; the resistance-capacitance model signal U1 and the gain-adjustable reverse signal U2 are vector-combined through the vector synthesis module to obtain the capacitive component and the conductance component, the capacitance component represents the moisture content in the soil, and the conductance component represents the conductivity of the soil model.

[0036] In this method, the optional frequency of the reference signal U0 is 15 MHz, and the reference signal U0 is a sinusoidal signal.

[0037] Such as Figure 4 As shown, a measurin...

Embodiment 3

[0043] Such as figure 1 As shown, in the present invention, a method for measuring soil moisture and electrical conductivity based on vector synthesis uses the reference signal U0 to obtain a resistance-capacitance model signal U1 whose amplitude and phase can be changed through the soil signal acquisition module; The reference signal U0 is amplified and reversed to obtain the gain-adjustable reverse signal U2, and U2 is the conductance signal; the resistance-capacitance model signal U1 and the gain-adjustable reverse signal U2 are vector-combined through the vector synthesis module to obtain the capacitive component and the conductance component, the capacitance component represents the moisture content in the soil, and the conductance component represents the conductivity of the soil model.

[0044] In this method, the optional frequency of the reference signal U0 is 23 MHz, and the reference signal U0 is a sinusoidal signal.

[0045] Such as Figure 4 As shown, a measurin...

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Abstract

The invention discloses a measuring method for soil moisture and electrical conductivity based on vectorial resultant and a device thereof. Reference signals obtains resistance-capacitance model signaThe invention discloses a measuring method for soil moisture and electrical conductivity based on vectorial resultant and a device thereof. Reference signals obtains resistance-capacitance model signals with variable amplitude and phase by a soil signal collection module; similarly, the reference signals is used, amplified and reversed to obtain reverse signals with adjustable gain; and vectorialls with variable amplitude and phase by a soil signal collection module; similarly, the reference signals is used, amplified and reversed to obtain reverse signals with adjustable gain; and vectorialresultant is carried out on the resistance-capacitance model signals and the reverse signals with adjustable gain by a vectorial resultant module to obtain capacitive component and conductive componenresultant is carried out on the resistance-capacitance model signals and the reverse signals with adjustable gain by a vectorial resultant module to obtain capacitive component and conductive component, namely obtain the soil moisture and the electrical conductivity of the soil model. The invention provides a soil moisture testing method with simple and smart thought, easy operation and easy realit, namely obtain the soil moisture and the electrical conductivity of the soil model. The invention provides a soil moisture testing method with simple and smart thought, easy operation and easy realization. The method can eliminate the influence of the electrical conduction in soil, accurately separate the capacitive component of the soil and improve the sensitivity and accuracy of a dielectric mzation. The method can eliminate the influence of the electrical conduction in soil, accurately separate the capacitive component of the soil and improve the sensitivity and accuracy of a dielectric method for moisture measurement. By the offset to the electrical conductivity of the soil model, the electrical conductivity of the soil can be obtained; and the electric conductivity is an important pethod for moisture measurement. By the offset to the electrical conductivity of the soil model, the electrical conductivity of the soil can be obtained; and the electric conductivity is an important parameter for reflecting the soil fertility.arameter for reflecting the soil fertility.

Description

technical field [0001] The invention relates to a method for measuring soil moisture and electrical conductivity, in particular to a method and device for measuring soil moisture and electrical conductivity using vector synthesis signal processing technology. Background technique [0002] Determining the moisture status of the soil requires corresponding irrigation according to the moisture required by the crops in different growth cycles, which is of great significance in agricultural production, and it is also a very effective measure for rational use of water resources, especially in my country. The significance is even more significant when the utilization rate of agricultural water resources is not high. [0003] At present, the soil water content measurement methods at home and abroad mainly include: Karl Fischer method, soil tension method, drying method, capacitance method, resistance method, γ-ray method, microwave method, neutron method, time domain reflection metho...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N27/02G01R27/02
Inventor 贾芳王晓雷葛苒胡建东
Owner HENAN AGRICULTURAL UNIVERSITY
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