CN204085687U - There is the solar irradiance sensor of temperature compensation - Google Patents

There is the solar irradiance sensor of temperature compensation Download PDF

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Publication number
CN204085687U
CN204085687U CN201420535806.6U CN201420535806U CN204085687U CN 204085687 U CN204085687 U CN 204085687U CN 201420535806 U CN201420535806 U CN 201420535806U CN 204085687 U CN204085687 U CN 204085687U
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China
Prior art keywords
cell piece
irradiance
solar cell
solar
printed board
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Withdrawn - After Issue
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CN201420535806.6U
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Chinese (zh)
Inventor
王传才
朱炬
朱文星
韩国华
毛翌春
任晓楠
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CETC 41 Institute
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CETC 41 Institute
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Abstract

The utility model discloses a kind of solar irradiance sensor with temperature compensation, comprise casing, solar cell piece, described solar irradiance sensor comprises cell piece printed board and Acquisition Circuit printed board, described cell piece printed board there is a thermistor, the side of described thermistor is covered with copper sheet, described solar cell piece is posted by melt viscosity above copper sheet, unsettledly above described solar cell piece be provided with a clear glass, described solar cell piece is parallel with a pull-up resistor; The irradiance Acquisition Circuit described Acquisition Circuit printed board comprising the temperature collection circuit be connected with thermistor and is connected with pull-up resistor, described Acquisition Circuit printed board is provided with an irradiance display screen.By the way, the utility model can realize to irradiance sensor without the need to carrying out thermostatic control to solar cell piece demarcation.

Description

There is the solar irradiance sensor of temperature compensation
Technical field
The utility model relates to irradiance detection field, particularly relates to a kind of solar irradiance sensor with temperature compensation.
Background technology
The peak power of solar battery measuring instrument detection components group string need be used when outdoor solar power station is checked and accepted and safeguarded.Solar battery measuring instrument first measures the peak power of assembly group string at current irradiance and temperature, then (IEC regulation irradiance is 1000W/m to calculate standard test condition by relevant conversion algorithm 2, temperature 25 DEG C) under the peak power of assembly group string.When current irradiance is transformed into standard test condition, need to know current solar irradiance, therefore need to configure a solar irradiance sensor to solar battery measuring instrument.
The response of solar cell is relevant with wavelength, and natural sunshine spectral distribution is by the impact of geographic position, weather, season and time.If adopt and measure irradiance to the pyranometer of spectrum non-selectivity, due to the change of spectral distribution, comparatively big error can be brought to measurement.For reducing this error, selecting the solar cell with the spectral response substantially identical with outdoor solar power station MUT module under test, measuring the irradiance of sunshine, make measurement more accurate.Also have in the market and directly utilize standard solar cell to measure solar irradiance, but this standard solar cell is without temperature detection and correction, only with thermostatic control system.
When adopting standard solar cell to demarcate solar irradiance sensor, the regulation light source adopted is solar simulator, short-circuit current on solar cell changes with the irradiance change of solar simulator, its ratio, close to constant, therefore can obtain the irradiance of solar simulator by the size measuring short-circuit current.The calibration value of solar cell is defined as: under standard test condition, and the short-circuit output current of standard solar cell and the ratio of irradiance, be called CV value.When the short-circuit current of solar cell equals its calibration value, can think that the irradiance of solar simulator reaches solar constant, i.e. a 1000W/m 2.Because temperature can affect the short-circuit output current of standard solar cell, standard solar cell has carried thermostatic control system and has ensured that standard solar cell maintains standard test condition (requiring temperature 25 DEG C).If attach thermostatic control system again at solar irradiance sensor can increase design cost, make troubles also can to outdoor practical operation.
Therefore need badly and provide a kind of novel solar irradiance sensor to solve the problems referred to above.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of solar irradiance sensor with temperature compensation, without the need to carrying out the demarcation that thermostatic control can realize irradiance sensor to solar cell piece.
For solving the problems of the technologies described above, the technical scheme that the utility model adopts is: provide a kind of solar irradiance sensor with temperature compensation, comprise casing, solar cell piece, described solar irradiance sensor comprises cell piece printed board and Acquisition Circuit printed board, described cell piece printed board there is a thermistor, the side of described thermistor is covered with copper sheet, described solar cell piece is posted by melt viscosity above copper sheet, unsettledly above described solar cell piece be provided with a clear glass, described solar cell piece is parallel with a pull-up resistor; The irradiance Acquisition Circuit described Acquisition Circuit printed board comprising the temperature collection circuit be connected with thermistor and is connected with pull-up resistor, described Acquisition Circuit printed board is provided with an irradiance display screen.
The beneficial effects of the utility model are: the utility model can realize the demarcation of standard cell sheet to irradiance sensor without the need to carrying out thermostatic control to cell piece again, and the irradiance sensor demarcated can Obtaining Accurate is current under outdoor different temperatures solar irradiance, has effectively saved the design cost of irradiance sensor.
Accompanying drawing explanation
Fig. 1 is the perspective view of the utility model solar irradiance sensor one preferred embodiment.
Fig. 2 is the circuit theory diagrams of shown solar irradiance sensor.
In accompanying drawing, the mark of each parts is as follows: 1, casing, and 2, Acquisition Circuit printed board, 3, irradiance display screen, 4, clear glass, 5, cell piece printed board, 6, thermistor, 7, copper sheet, 8, solar cell piece, 9, serial line interface.
Embodiment
Below in conjunction with accompanying drawing, preferred embodiment of the present utility model is described in detail, to make advantage of the present utility model and feature can be easier to be readily appreciated by one skilled in the art, thus more explicit defining is made to protection domain of the present utility model.
Refer to Fig. 1 and Fig. 2, the utility model embodiment comprises:
A kind of solar irradiance sensor with temperature compensation, comprise casing 1, Acquisition Circuit printed board 2, irradiance display screen 3, cell piece printed board 5, clear glass 4 and solar cell piece 8, One serial interface 9 is provided with, for carrying out data communication with host computer in the side of casing 1.Described cell piece printed board 5 has a thermistor 6, the side of described thermistor 6 is covered with copper sheet 7, described solar cell piece 8 is pasted by the hot melt adhesive that heat conductivility is good above copper sheet 7, the area of copper sheet 7 is greater than the area of solar cell piece 8, so just can be accurately monitored the surface temperature of solar cell piece 8.Unsettledly above described solar cell piece 8 be provided with clear glass 4, in a preferred embodiment, the transmittance of clear glass 4 is 93%.Clear glass 4 and casing 1 form integrative-structure, and solar cell piece 8 is completely closed, prevent moisture and dust from entering, and also prevent solar cell piece 8 from revealing oxidized in atmosphere simultaneously.Solar irradiance sensor carries out data communication by serial line interface 9 and host computer, is finally presented on irradiance display screen 3 by the irradiance monitored.
Refer to Fig. 2, described solar cell piece 8 is parallel with a pull-up resistor 6, and the resistance of pull-up resistor 6 is minimum, and solar cell piece 8 is operated in close to short-circuit condition.Described Acquisition Circuit printed board 2 comprises the temperature collection circuit be connected with thermistor 6 and the irradiance Acquisition Circuit be connected with pull-up resistor, and temperature collection circuit and irradiance Acquisition Circuit are all connected to host computer, and shares 2.5V reference voltage.The principle of work of described solar irradiance sensor is as follows:
The temperature variation of solar cell piece 8 causes the change in resistance of thermistor R2, change in resistance causes the voltage signal of R2 to change, and the voltage signal of single-chip microcomputer collection after the amplifier follower in temperature collection circuit is also sent to host computer by described serial line interface 9 after analog-to-digital conversion.On solar cell piece 8, the change of irradiance causes the short-circuit current change flowing through pull-up resistor R1, the minimum voltage signal that short-circuit current flows through pull-up resistor R1 generation is amplified by the amplifier amplifying circuit in irradiance Acquisition Circuit, voltage signal after being amplified by single-chip microcomputer collection again, described voltage signal is sent to host computer by described serial line interface 9 after analog to digital conversion.The signal collected adopts relevant conversion code to obtain temperature and short-circuit current by host computer, utilizes short-circuit current temperature correction algorithm to calculate irradiance and is sent to irradiance sensor by serial line interface 9, being presented on irradiance display screen 3.Solar cell piece 8 temperature is monitored effectively accurately by the mode of above-mentioned thermistor pad expansion, again by simple circuit design and and software code layout, complete the design of the irradiance sensor with temperature compensation, just the demarcation of standard cell sheet to irradiance sensor can be realized without the need to carrying out thermostatic control to solar cell piece 8 again, effectively save irradiance sensor design cost, also eliminate the inconvenience brought to the practical operation of solar irradiance sensor because adding thermostatic control system simultaneously, and the irradiance sensor demarcated can Obtaining Accurate is current under outdoor different temperatures solar irradiance.
The foregoing is only embodiment of the present utility model; not thereby the scope of the claims of the present utility model is limited; every utilize the utility model instructions and accompanying drawing content to do equivalent structure or equivalent flow process conversion; or be directly or indirectly used in other relevant technical fields, be all in like manner included in scope of patent protection of the present utility model.

Claims (5)

1. one kind has the solar irradiance sensor of temperature compensation, comprise casing, solar cell piece, it is characterized in that, described solar irradiance sensor comprises cell piece printed board and Acquisition Circuit printed board, described cell piece printed board has a thermistor, and the side of described thermistor is covered with copper sheet, above copper sheet, post described solar cell piece by melt viscosity, unsettledly above described solar cell piece be provided with a clear glass, described solar cell piece is parallel with a pull-up resistor; The irradiance Acquisition Circuit described Acquisition Circuit printed board comprising the temperature collection circuit be connected with thermistor and is connected with pull-up resistor, described Acquisition Circuit printed board is provided with an irradiance display screen.
2. the solar irradiance sensor with temperature compensation according to claim 1, is characterized in that, the area of described copper sheet is greater than the area of described solar cell piece.
3. the solar irradiance sensor with temperature compensation according to claim 1, is characterized in that, described clear glass and described casing form integrative-structure.
4. the solar irradiance sensor with temperature compensation according to claim 1, it is characterized in that, the side of described casing is provided with One serial interface.
5. the solar irradiance sensor with temperature compensation according to claim 1, is characterized in that, described temperature collection circuit and irradiance Acquisition Circuit share 2.5V reference voltage.
CN201420535806.6U 2014-09-17 2014-09-17 There is the solar irradiance sensor of temperature compensation Withdrawn - After Issue CN204085687U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420535806.6U CN204085687U (en) 2014-09-17 2014-09-17 There is the solar irradiance sensor of temperature compensation

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Application Number Priority Date Filing Date Title
CN201420535806.6U CN204085687U (en) 2014-09-17 2014-09-17 There is the solar irradiance sensor of temperature compensation

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104198035A (en) * 2014-09-17 2014-12-10 中国电子科技集团公司第四十一研究所 Solar irradiance sensor with temperature compensation function

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104198035A (en) * 2014-09-17 2014-12-10 中国电子科技集团公司第四十一研究所 Solar irradiance sensor with temperature compensation function
CN104198035B (en) * 2014-09-17 2016-02-10 中国电子科技集团公司第四十一研究所 There is the solar irradiance sensor of temperature compensation

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20150107

Effective date of abandoning: 20160210

C25 Abandonment of patent right or utility model to avoid double patenting