CN205068203U - Complete intelligent marsh gas control system based on si kaer K60 singlechip flies - Google Patents

Complete intelligent marsh gas control system based on si kaer K60 singlechip flies Download PDF

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Publication number
CN205068203U
CN205068203U CN201520702763.0U CN201520702763U CN205068203U CN 205068203 U CN205068203 U CN 205068203U CN 201520702763 U CN201520702763 U CN 201520702763U CN 205068203 U CN205068203 U CN 205068203U
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China
Prior art keywords
circuit module
freescale
wire
chip microcomputer
drive circuit
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Expired - Fee Related
Application number
CN201520702763.0U
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Chinese (zh)
Inventor
覃涛
赵富强
曹顺
王长坤
马原野
张传聪
严朝磊
刘伟国
欧阳继能
陶海
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Nanchang Hangkong University
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Nanchang Hangkong University
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Priority to CN201520702763.0U priority Critical patent/CN205068203U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E50/00Technologies for the production of fuel of non-fossil origin
    • Y02E50/30Fuel from waste, e.g. synthetic alcohol or diesel

Abstract

The utility model relates to a complete intelligent marsh gas control system based on si kaer K60 singlechip flies, its characteristics are: marsh gas sensor and level sensor detect the concentration and the methane -generating pit liquid level of marsh gas respectively, convert concentration and liquid level into data signal, and the transmission handles for the k60 chip, then shows on the display screen. When concentration and liquid level were greater than its threshold value respectively, the system can report to the police, reminded the user, control system work simultaneously, and drive compressors work is with marsh gas compress to the storage is in the gas bottle, and driven water pump work reduces the liquid level. When the user removes the gred to the natural pond pond, open the switch that control system controlled the vent flap of methane -generating pit, the system can work by driving motor, opens vent flap, and air -blower work is with the concentration reduction of marsh gas. The utility model has the advantages that: systematic circuit is simple, easy operation, the system implementation host computer and the next machine pass through network remote communication's function, system easy operation, intelligent degree is high.

Description

A kind of full Intelligent methane control system based on Freescale K60 single-chip microcomputer
Technical field
The utility model relates to a kind of Long-distance Control and detection system, is specifically related to a kind of full Intelligent methane control system based on Freescale K60 single-chip microcomputer.
Technical background
The control system of current biogas does not also have independently intelligent control system, is connected with internet yet, realizes the bi-directional communication function of host computer and slave computer, reach the object of Long-distance Control.Based on the full Intelligent methane control system of Freescale K60 single-chip microcomputer, Control system architecture is simple, product cheap, and control efficiency is high and simple to operate, Based Intelligent Control integrated level is high, decreases manual operation.
Summary of the invention
In order to overcome, current biogas control system circuit is complicated, energy saving is poor, price is high, control efficiency is low, and the shortcoming that intelligence degree is not high, object of the present invention provides a kind of full Intelligent methane control system based on Freescale K60 single-chip microcomputer, when the biogas concentration in methane-generating pit and liquid level exceed the threshold value of setting, system automatic control system works, drive compressor operating, biogas is compressed, and is stored in gas tank, drive pump working, reduce liquid level in pond.When user removes the gred to fen, opening control controls the switch of the cowling of methane-generating pit, and the work of system meeting drive motor, opens cowling, fan blower work, the concentration of biogas reduced.In addition, Freescale K60 single-chip microcomputer can be communicated with host computer by internet.Upper function display biogas concentration value and level value, and order directly each drive circuit works of control can be sent.
The utility model is achieved like this, based on a full Intelligent methane control system for Freescale K60 single-chip microcomputer, mainly comprise Freescale K60 single-chip microcomputer, biogas sensor, analog to digital conversion circuit module, liquid level sensor, fan blower drive circuit module, fan blower, water pump drive circuit module, water pump, RS-232 circuit module, serial server, router-A, router B, host computer, gas tank, compressor, compressor drive circuit module, cowling, cowling drive circuit module, warning circuit module, display screen, it is characterized in that: biogas sensor and liquid level sensor are by wire and analog to digital conversion circuit model calling, analog to digital conversion circuit module is connected with Freescale K60 single-chip microcomputer by wire, Freescale K60 single-chip microcomputer is connected with display screen by wire, Freescale K60 single-chip microcomputer is by wire and warning circuit model calling, Freescale K60 single-chip microcomputer is connected with water pump drive circuit module by wire, water pump drive circuit module is connected with water pump by wire, Freescale K60 single-chip microcomputer is connected with fan blower drive circuit module by wire, fan blower drive circuit module is connected with fan blower by wire, Freescale K60 single-chip microcomputer is by wire and compressor drive circuit model calling, compressor drive circuit module is connected with compressor by wire, compressor is connected with gas tank by wire, Freescale K60 single-chip microcomputer is connected with cowling drive circuit module by wire, cowling drive circuit module is connected with cowling by wire, Freescale K60 single-chip microcomputer is connected with RS-232 circuit module by Serial Port Line, and RS-232 circuit module is connected with serial server by Serial Port Line, and serial server is connected with router-A by twisted-pair feeder, and the router-A other end is connected with internet by twisted-pair feeder, host computer is connected with router B by twisted-pair feeder, and router B is connected with internet by twisted-pair feeder.
Described K60 single-chip microcomputer and have analog to digital conversion circuit between biogas sensor circuit and liquid level sensor circuit, realizes function voltage analog signal being converted to digital voltage signal.
There is relay drive circuit between described Freescale K60 single-chip microcomputer and system power supply, realize the function of automatic cut-off power, ensure the safety of system works.
Described RS-232 circuit is connected with serial server, realizes the transmission of data.
Described serial server is connected in the LAN (Local Area Network) A of router-A formation, and the serial server other end connects RS-232 circuit, in router-A connecting Internet; Host computer connects in the LAN (Local Area Network) B of router B formation, and router B connects in internet.Level value in host computer display biogas concentration value and pond, and signal can be sent directly control slave computer, realize the function of long-range two-way communication.
Biogas sensor described in the utility model and liquid level sensor by the Signal transmissions that detects to analog to digital conversion circuit, digital data transmission after simulating signal being changed is to Freescale K60 single-chip microcomputer, and show biogas concentration value and level value, data are processed by algorithm by Freescale K60 single-chip microcomputer, when concentration and liquid level are greater than its threshold value respectively, system can be reported to the police, reminding user, control system work simultaneously, drive compressor operating, biogas is compressed, and is stored in gas tank, drive pump working, reduce liquid level.When user removes the gred to fen, opening control controls the switch of the cowling of methane-generating pit, and the work of system meeting drive motor, opens cowling, fan blower work, the concentration of biogas reduced.When user needs to remove the gred to fen, opening control controls the control knob of the cowling of methane-generating pit, and the work of system meeting drive motor, open cowling, after time delay 5S, fan blower is started working, and the concentration of biogas is reduced, and meets accident when avoiding user to remove the gred.When fan blower work quit work after 3 minutes, K60 chip sends signal, drives relay circuit work, cuts off the power supply of executive circuit, ensures security of system.Freescale K60 single-chip microcomputer and host computer realize two-way communication by internet; Biogas concentration and level value can be presented on the screen of host computer, and upper function sends order, control system after Freescale K60 monolithic function takes orders.
The utility model has the advantages that: the circuit of system is simple, and system achieves host computer and slave computer realizes the function of telecommunication by internet, and Dynamic System is simple, and intelligence degree is high.
Accompanying drawing explanation
Fig. 1 is the structural drawing of the utility model system.
Fig. 2 is the control flow chart of the utility model system.
In the drawings, 1, Freescale K60 single-chip microcomputer, 2, biogas sensor, 3, analog to digital conversion circuit module, 4, liquid level sensor, 5, fan blower drive circuit module, 6, fan blower, 7, water pump drive circuit module, 8, water pump, 9, RS-232 circuit module, 10, serial server, 11, router-A, 12, internet, 13, router B, 14, host computer, 15, gas tank, 16, compressor, 17, compressor drive circuit module, 18, cowling, 19, cowling drive circuit module, 20, warning circuit module, 21, display screen.
Embodiment
As shown in Figure 1, the utility model is achieved like this, a kind of full Intelligent methane control system based on Freescale K60 single-chip microcomputer, the utility model is achieved like this, it comprises Freescale K60 single-chip microcomputer 1, biogas sensor 2, analog to digital conversion circuit module 3, liquid level sensor 4, fan blower drive circuit module 5, fan blower 6, water pump drive circuit module 7, water pump 8, RS-232 circuit module 9, serial server 10, (router-A) 11, internet 12, (router B) 13, host computer 14, gas tank 15, compressor 16, compressor drive circuit module 17, cowling 18, cowling drive circuit module 19, warning circuit module 20, display screen 21.It is characterized in that: biogas sensor 2 is connected with analog to digital conversion circuit module 3 by wire with liquid level sensor 4, analog to digital conversion circuit module 3 is connected with Freescale K60 single-chip microcomputer 1 by wire, Freescale K60 single-chip microcomputer 1 is connected with display screen 21 by wire, Freescale K60 single-chip microcomputer 1 is connected with warning circuit module 20 by wire, Freescale K60 single-chip microcomputer 1 is connected with water pump drive circuit module 7 by wire, water pump drive circuit module 7 is connected with water pump 8 by wire, Freescale K60 single-chip microcomputer 1 is connected with fan blower drive circuit module 5 by wire, fan blower drive circuit module 5 is connected with fan blower 6 by wire, Freescale K60 single-chip microcomputer 1 is connected with compressor drive circuit module 17 by wire, compressor drive circuit module 17 is connected with compressor 16 by wire, compressor 16 is connected with gas tank 15 by wire, Freescale K60 single-chip microcomputer 1 is connected with cowling drive circuit module 19 by wire, cowling drive circuit module 19 is connected with cowling 18 by wire.Freescale K60 single-chip microcomputer 1 is connected with RS-232 circuit module 9 by Serial Port Line, RS-232 circuit module 9 is connected with serial server 10 by Serial Port Line, serial server 10 is connected with (router-A) 11 by twisted-pair feeder, (router-A) 11 the other end be connected with internet 12 by twisted-pair feeder.Host computer 14 is connected with (router B) 13 by twisted-pair feeder, and (router B) 13 is connected with internet 12 by twisted-pair feeder.
As shown in Figure 2, using method of the present utility model: the biogas concentration in biogas sensor and the automatic sensing chamber of liquid level sensor and liquid level, be separately converted to the voltage signal of 0-5v by the concentration of biogas and liquid level.Voltage signal is transferred to modulus conversion chip, is converted to digital signal.Digital signal is transferred to Freescale K60 single-chip microcomputer by wire.In Freescale K60 single-chip microcomputer, digital signal is carried out computing by program by Freescale K60 single-chip microcomputer, then shows on a display screen.When concentration and liquid level are greater than its threshold value respectively, system can be reported to the police, reminding user, simultaneously control system automatic operation, drives compressor operating, is compressed by biogas, and be stored in gas tank, drives pump working, reduces liquid level.When user needs to remove the gred to fen, opening control controls the control knob of the cowling of methane-generating pit, and the work of system meeting drive motor, open cowling, after time delay 5S, fan blower is started working, and the concentration of biogas is reduced, and meets accident when avoiding user to remove the gred.When fan blower work quit work after 3 minutes, Freescale K60 single-chip microcomputer sends signal, drives relay circuit work, cuts off the power supply of executive circuit, ensures security of system.Freescale K60 single-chip microcomputer is connected by Serial Port Line with RS-232 circuit, and RS-232 circuit is connected by Serial Port Line with serial server, and serial server is connected with router one, in router one accessing Internet.Host computer is connected with router two, in router two accessing Internet.Liquid level and biogas concentration are transferred to serial server, data are packed by network transmission protocol ICP/IP protocol by serial server, data after packing by Internet Transmission to host computer, host computer shows after data being unpacked on webpage, user can by pressing the shift knob mark opening fan blower and cowling on the Systematical control webpage of host computer, signal is packed through the network transmission protocol, by network by Signal transmissions to serial server, data unpack by serial server, data after unpacking are transferred to Freescale K60 single-chip microcomputer through Serial Port Line, after Freescale K60 single-chip microcomputer processes data, Direct driver fan blower works, cowling is opened or is driven pump working, reduce biogas concentration and liquid level in pond.
The high-degree of conversion of the concentration of biogas and liquid level is voltage signal by biogas concentration respectively in detection cell of biogas sensor 2 described in the utility model and liquid level sensor 4 and liquid level.Voltage signal is transferred to analog to digital conversion circuit 3, is converted to digital signal.Digital data transmission is to Freescale K60 single-chip microcomputer 1.Freescale K60 single-chip microcomputer 1 pair of signal processes, and when concentration and liquid level are greater than respective threshold value respectively, Freescale K60 single-chip microcomputer 1 can output signal, and drives compressor 16 work to reduce biogas concentration, and drives water pump 8 work to reduce liquid level.Concentration value and level value can pass through RS-232 circuit 9 simultaneously, are transferred to serial server 10.Serial server 10 can utilize internet to send the data to host computer 14 to show.User can send control command on the interface of host computer 14, orders by internet transmission to serial server 10.Serial server 10 transfers data to after data are changed by RS-232 circuit 9, RS-232 circuit 9 and is transferred to Freescale K60 single-chip microcomputer 1.Freescale K60 single-chip microcomputer 1 collects data and after process, directly output signal drives each circuit to carry out work.
When user needs to remove the gred to fen, opening control controls the control knob of the cowling 18 of methane-generating pit, the work of system meeting drive motor, open cowling 18, after time delay 5S, fan blower 6 is started working, the concentration of biogas is reduced, meets accident when avoiding user to remove the gred.Quit work after fan blower 6 works 3 minutes, Freescale K60 single-chip microcomputer 1 sends signal, drives relay circuit work, cuts off the power supply of executive circuit, ensures security of system.

Claims (1)

1., based on a full Intelligent methane control system for Freescale K60 single-chip microcomputer, mainly comprise Freescale K60 single-chip microcomputer, biogas sensor, analog to digital conversion circuit module, liquid level sensor, fan blower drive circuit module, fan blower, water pump drive circuit module, water pump, RS-232 circuit module, serial server, router-A, router B, host computer, gas tank, compressor, compressor drive circuit module, cowling, cowling drive circuit module, warning circuit module, display screen, it is characterized in that: biogas sensor and liquid level sensor are by wire and analog to digital conversion circuit model calling, analog to digital conversion circuit module is connected with Freescale K60 single-chip microcomputer by wire, Freescale K60 single-chip microcomputer is connected with display screen by wire, Freescale K60 single-chip microcomputer is by wire and warning circuit model calling, Freescale K60 single-chip microcomputer is connected with water pump drive circuit module by wire, water pump drive circuit module is connected with water pump by wire, Freescale K60 single-chip microcomputer is connected with fan blower drive circuit module by wire, fan blower drive circuit module is connected with fan blower by wire, Freescale K60 single-chip microcomputer is by wire and compressor drive circuit model calling, compressor drive circuit module is connected with compressor by wire, compressor is connected with gas tank by wire, Freescale K60 single-chip microcomputer is connected with cowling drive circuit module by wire, cowling drive circuit module is connected with cowling by wire, Freescale K60 single-chip microcomputer is connected with RS-232 circuit module by Serial Port Line, and RS-232 circuit module is connected with serial server by Serial Port Line, and serial server is connected with router-A by twisted-pair feeder, and the router-A other end is connected with internet by twisted-pair feeder, host computer is connected with router B by twisted-pair feeder, and router B is connected with internet by twisted-pair feeder.
CN201520702763.0U 2015-09-11 2015-09-11 Complete intelligent marsh gas control system based on si kaer K60 singlechip flies Expired - Fee Related CN205068203U (en)

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CN201520702763.0U CN205068203U (en) 2015-09-11 2015-09-11 Complete intelligent marsh gas control system based on si kaer K60 singlechip flies

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CN201520702763.0U CN205068203U (en) 2015-09-11 2015-09-11 Complete intelligent marsh gas control system based on si kaer K60 singlechip flies

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107015592A (en) * 2017-06-02 2017-08-04 乐山力朴能源环保科技有限公司 Biogas remote monitoring and control system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107015592A (en) * 2017-06-02 2017-08-04 乐山力朴能源环保科技有限公司 Biogas remote monitoring and control system

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20160302

Termination date: 20160911