CN204705376U - A kind of warm canopy environmental monitoring system based on Internet of Things - Google Patents
A kind of warm canopy environmental monitoring system based on Internet of Things Download PDFInfo
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- CN204705376U CN204705376U CN201520252439.3U CN201520252439U CN204705376U CN 204705376 U CN204705376 U CN 204705376U CN 201520252439 U CN201520252439 U CN 201520252439U CN 204705376 U CN204705376 U CN 204705376U
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Abstract
The utility model relates to technology of Internet of things field, especially a kind of warm canopy environmental monitoring system based on Internet of Things.It comprises acquisition module, microprocessor, human-machine exchange module, WIFI module, platform of internet of things data reception module, trigger and information sending module; The signal of collection also inputs in microprocessor by the temperature signal in acquisition module Real-time Collection temperature canopy and light signal, signal carries out arranging and by signal feedback to human-machine exchange module and WIFI module by microprocessor, WIFI module converts the signal into wireless signal and is delivered to platform of internet of things data reception module, platform of internet of things data reception module is by signal feedback to trigger, and signal is inputed to information sending module by trigger.The utility model structure is simple, has very strong practicality.
Description
Technical field
The utility model relates to technology of Internet of things field, especially a kind of warm canopy environmental monitoring system based on Internet of Things.
Background technology
As everyone knows, along with the fast development of large-scale farming industry and technology of Internet of things, traditional dependence natural resources, the cultivation of inefficiency can not meet modern high yield, high-quality, efficient, safe, ecological requirement already, modern farming just along with technology of Internet of things to informationalized future development.The environmental parameter how obtained within the very first time needed for more cultivation is that modern farming is successfully crucial with the cultivation realized under optimum condition.Though the more domestic cultivation based on technology of Internet of things can measure multiple breeding environment parameter at present, mostly design complexity, be difficult to be widely used.
Utility model content
For above-mentioned the deficiencies in the prior art, the purpose of this utility model is to provide a kind of warm canopy environmental monitoring system based on Internet of Things.
To achieve these goals, the utility model adopts following technical scheme:
Based on a warm canopy environmental monitoring system for Internet of Things, it comprises acquisition module, microprocessor, human-machine exchange module, WIFI module, platform of internet of things data reception module, trigger and information sending module;
The signal of collection also inputs in microprocessor by the temperature signal in described acquisition module Real-time Collection temperature canopy and light signal, signal carries out arranging and by signal feedback to human-machine exchange module and WIFI module by described microprocessor, described WIFI module converts the signal into wireless signal and is delivered to platform of internet of things data reception module, described platform of internet of things data reception module by signal feedback to trigger, signal is inputed to information sending module by described trigger, and described information sending module outwards sends short message;
Described microprocessor is electrically connected with power module, and described platform of internet of things data reception module is electrically connected with data disaply moudle.
Preferably, described acquisition module comprises temperature collection circuit, described temperature collection circuit comprises thermo-responsive resistance, the first adjustable resistance and the first amplifier, the output terminal of described first amplifier is connected with microprocessor, the in-phase end of described first amplifier is connected with the output terminal of self with the second resistance by the first resistance connected successively, the adjustable end of described first adjustable resistance is connected with the end of oppisite phase of the first amplifier, described thermo-responsive resistance is connected with the end of oppisite phase of the first amplifier, and described thermo-responsive resistor coupled in parallel has the first electric capacity.
Preferably, described acquisition module also comprises light signal collection circuit, described light signal collection circuit comprises the second amplifier, the second adjustable resistance and photodiode, the adjustable end of described second adjustable resistance is connected with the end of oppisite phase of the second amplifier, described photodiode is parallel with the second electric capacity, the positive pole of described photodiode is connected with the in-phase end of the second amplifier, the in-phase end of described second amplifier is connected with the output terminal of self with the 4th resistance by the 3rd resistance of connecting successively, and the output terminal of described second amplifier is connected with microprocessor.
Owing to have employed such scheme, the utility model passes through temperature signal and the luminance signal of acquisition module Real-time Collection temperature canopy inside; Meanwhile, the transmission of Internet of Things information is realized by platform of internet of things data reception module; Further, information number is sent by note form by information sending module, and its structure is simple, easy to operate, has very strong practicality.
Accompanying drawing explanation
Fig. 1 is the structural principle schematic diagram of the utility model embodiment;
Fig. 2 is the electrical block diagram of the temperature collection circuit of the utility model embodiment;
Fig. 3 is the electrical block diagram of the light signal collection circuit of the utility model embodiment.
Embodiment
Below in conjunction with accompanying drawing, embodiment of the present utility model is described in detail, but the multitude of different ways that the utility model can be defined by the claims and cover is implemented.
As shown in Figure 1 to Figure 3, a kind of warm canopy environmental monitoring system based on Internet of Things that the present embodiment provides, it comprises acquisition module 1, microprocessor 2, human-machine exchange module 3, WIFI module 4, platform of internet of things data reception module 6, trigger 7 and information sending module 8; The signal of collection also to be inputed in microprocessor 2 by the temperature signal in acquisition module 1 Real-time Collection temperature canopy and light signal, signal carries out arranging and by signal feedback to human-machine exchange module 3 and WIFI module 4 by microprocessor 2, WIFI module 4 converts the signal into wireless signal and is delivered to platform of internet of things data reception module 6, platform of internet of things data reception module 6 by signal feedback to trigger 7, signal is inputed to information sending module 8 by trigger 7, and information sending module 8 outwards sends short message; Microprocessor 2 is electrically connected with power module 9, and platform of internet of things data reception module 6 is electrically connected with data disaply moudle 5.The present embodiment passes through temperature signal and the luminance signal of acquisition module 1 Real-time Collection temperature canopy inside; Meanwhile, the transmission of Internet of Things information is realized by platform of internet of things data reception module 6; Further, information number is sent by note form by information sending module 8.During the present embodiment work, the signal collected is utilized to be sent to platform of internet of things data reception module 6, then utilize platform of internet of things data reception module 6 to transmit, send short message eventually through information sending module 8, user can learn warm canopy internal information whenever and wherever possible by short message.
The acquisition module 1 of the present embodiment comprises temperature collection circuit, temperature collection circuit can adopt circuit structure as shown in Figure 2, namely thermo-responsive resistance Rt is comprised, first adjustable resistance Rv1 and the first amplifier A1, the output terminal of the first amplifier A1 is connected with microprocessor 2, the in-phase end of the first amplifier A1 is connected with the output terminal of self with the second resistance R2 by the first resistance R1 connected successively, the adjustable end of the first adjustable resistance Rv1 is connected with the end of oppisite phase of the first amplifier A1, thermo-responsive resistance Rt is connected with the end of oppisite phase of the first amplifier A1, thermo-responsive resistance Rt is parallel with the first electric capacity C1.The present embodiment carries out the collection of temperature signal by thermo-responsive resistance Rt, and by the first amplifier A1, signal is carried out amplification process.
The acquisition module 1 of the present embodiment also comprises light signal collection circuit, light signal collection circuit can adopt circuit structure as shown in Figure 3, namely the second amplifier A2 is comprised, second adjustable resistance Rv2 and photodiode D1, the adjustable end of the second adjustable resistance Rv2 is connected with the end of oppisite phase of the second amplifier A1, photodiode D1 is parallel with the second electric capacity C2, the positive pole of photodiode D1 is connected with the in-phase end of the second amplifier A2, the in-phase end of the second amplifier A2 is connected with the output terminal of self with the 4th resistance R4 by the 3rd resistance R3 connected successively, the output terminal of the second amplifier A2 is connected with microprocessor 1.The present embodiment carries out the collection of light signal by photodiode D1, and carries out the amplification of signal by the second amplifier A2.
The foregoing is only preferred 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 (3)
1. based on a warm canopy environmental monitoring system for Internet of Things, it is characterized in that: it comprises acquisition module, microprocessor, human-machine exchange module, WIFI module, platform of internet of things data reception module, trigger and information sending module;
The signal of collection also inputs in microprocessor by the temperature signal in described acquisition module Real-time Collection temperature canopy and light signal, signal carries out arranging and by signal feedback to human-machine exchange module and WIFI module by described microprocessor, described WIFI module converts the signal into wireless signal and is delivered to platform of internet of things data reception module, described platform of internet of things data reception module by signal feedback to trigger, signal is inputed to information sending module by described trigger, and described information sending module outwards sends short message;
Described microprocessor is electrically connected with power module, and described platform of internet of things data reception module is electrically connected with data disaply moudle.
2. a kind of warm canopy environmental monitoring system based on Internet of Things as claimed in claim 1, it is characterized in that: described acquisition module comprises temperature collection circuit, described temperature collection circuit comprises thermo-responsive resistance, first adjustable resistance and the first amplifier, the output terminal of described first amplifier is connected with microprocessor, the in-phase end of described first amplifier is connected with the output terminal of self with the second resistance by the first resistance connected successively, the adjustable end of described first adjustable resistance is connected with the end of oppisite phase of the first amplifier, described thermo-responsive resistance is connected with the end of oppisite phase of the first amplifier, described thermo-responsive resistor coupled in parallel has the first electric capacity.
3. a kind of warm canopy environmental monitoring system based on Internet of Things as claimed in claim 1, it is characterized in that: described acquisition module also comprises light signal collection circuit, described light signal collection circuit comprises the second amplifier, second adjustable resistance and photodiode, the adjustable end of described second adjustable resistance is connected with the end of oppisite phase of the second amplifier, described photodiode is parallel with the second electric capacity, the positive pole of described photodiode is connected with the in-phase end of the second amplifier, the in-phase end of described second amplifier is connected with the output terminal of self with the 4th resistance by the 3rd resistance of connecting successively, the output terminal of described second amplifier is connected with microprocessor.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520252439.3U CN204705376U (en) | 2015-04-22 | 2015-04-22 | A kind of warm canopy environmental monitoring system based on Internet of Things |
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CN201520252439.3U CN204705376U (en) | 2015-04-22 | 2015-04-22 | A kind of warm canopy environmental monitoring system based on Internet of Things |
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CN204705376U true CN204705376U (en) | 2015-10-14 |
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CN201520252439.3U Expired - Fee Related CN204705376U (en) | 2015-04-22 | 2015-04-22 | A kind of warm canopy environmental monitoring system based on Internet of Things |
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2015
- 2015-04-22 CN CN201520252439.3U patent/CN204705376U/en not_active Expired - Fee Related
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20151014 Termination date: 20200422 |
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CF01 | Termination of patent right due to non-payment of annual fee |