CN205507454U - Generator WIFI intelligence control system - Google Patents
Generator WIFI intelligence control system Download PDFInfo
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- CN205507454U CN205507454U CN201620261533.XU CN201620261533U CN205507454U CN 205507454 U CN205507454 U CN 205507454U CN 201620261533 U CN201620261533 U CN 201620261533U CN 205507454 U CN205507454 U CN 205507454U
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Abstract
The utility model discloses a generator WIFI intelligence control system, including power module, data acquisition module, start control module, put out fire control moulding piece, MCU module, signal transceiver module and mobility control end, wherein, data acquisition module, start control module, put out fire control moulding piece, signal transceiver module and link to each other with the MCU module respectively, the mobility control end passes through WIFI radio communication with signal transceiver module, power module is each the module power supply in the intelligence control system respectively. Generator WIFI intelligence control system intelligent, the security, all there is an obvious improvement aspects such as travelling comfort, the user can start through the cell -phone of oneself / flame -out generator and look over the generator operation state, and is very intelligent.
Description
Technical field
This utility model relates to a kind of electromotor WIFI intelligence control system, belongs to generator control technical field.
Background technology
At present, along with electromotor application in workers and peasants' production, national defence, science and technology and daily life is more and more extensive, performance and intelligent requirements to electromotor are more and more higher.Most of electromotors are required for manually starting or stopping working electromotor, and need scene to check the operation conditions of electromotor, and noise is big during generator operation, tail gas weight, personal safety is also had a certain degree of impact, if user by the mobile phone remote manipulation electromotor of oneself, and can check the running status of electromotor constantly, that will be a highly useful thing.
In view of this, this is studied by the present inventor, develops a kind of electromotor WIFI intelligence control system specially, and this case thus produces.
Utility model content
The purpose of this utility model is to provide a kind of electromotor WIFI intelligence control system, can pass through the mobile end control electromotor that controls and start, stop working and check operation state of generator.
To achieve these goals, solution of the present utility model is:
A kind of electromotor WIFI intelligence control system, including supply module, data acquisition module, startup control module, flame-out control module, MCU module, signal transmitting and receiving module and mobile control end, wherein, described data acquisition module, startup control module, flame-out control module, signal transmitting and receiving module are connected with MCU module respectively, the described mobile end that controls passes through WIFI radio communication, each module for power supply that described supply module is respectively in intelligence control system with signal transmitting and receiving module.
Further, described supply module includes electromotor storage battery, current rectifying and wave filtering circuit, serial regulating circuit and three terminal regulator, electromotor storage battery electric current is through current rectifying and wave filtering circuit rectifying and wave-filtering, galvanic current is exported after serial regulating circuit and three terminal regulator voltage stabilizing, can be to power elements such as MUC, it is ensured that the stabilization member such as MUC run reliably.
Further, described data acquisition module includes current sensor, voltage sensor and operational amplifier, wherein, described current sensor gathers output generator current, and the current signal collected is sent to MCU module, described voltage sensor gathers generator output voltage, and after operational amplifier amplifies, the voltage signal collected is input to MCU module.
Further, described startup control module includes motor drive ic, motor, electromotor actuating coil, and described motor is connected with MCU module by motor drive ic, and electromotor actuating coil is connected with MCU module by switching tube.Start control module under MCU module accurately controls, it is ensured that electromotor normal reliable starts.
Further, described control module of stopping working is connected with electromotor high voltage package and MCU module respectively, including several interconnective transistors, resistance, electric capacity and Zener diode, is used for controlling electromotor and stops working.
Further, described MCU module uses model to be the single-chip microcomputer of DSPIC30F3013.
Further, described signal transmitting and receiving module uses WIFI module, specifically can use the USR-WIFI232-B module that Jinan You Ren technology of Internet of things company limited produces.
nullAbove-mentioned electromotor WIFI intelligence control system operation principle: with electromotor storage battery as power supply,Signal transmitting and receiving module sends WIFI signal,Client connects WIFI signal by the mobile end (such as mobile phone etc.) that controls,And send electromotor enabling signal by the mobile end APP that controls,Signal transmitting and receiving module is transferred to MCU module after receiving enabling signal,Then MCU module output starts control signal to starting control module,Control electromotor to start,The electric current of data acquisition module Real-time Collection electromotor、Voltage signal,And it is transferred to MCU module,MCU module is by being sent to mobile control end by signal transmitting and receiving module after analyzing and processing,So user just can be with real time inspection generator operation situation,And misfire signals can be sent to MCU module,Given by the flame-out control signal of MCU module output and control flame-out module,And then it is flame-out to control electromotor.Compared with prior art, electromotor WIFI intelligence control system described in the utility model is intelligent, and safety, the aspect such as comfortableness all improves significantly.User can be by the handset starting of oneself or flame-out electromotor, the most intelligent, need not on-the-spot startup or flame-out electromotor, also avoid the need for bearing the big noise of electromotor, heavy-tailed gas, safety is the highest, by checking the mobile phone of oneself, just can know the running status of electromotor, output voltage, electric current easily, bearing power, separate run times and accumulated running time etc..
Below in conjunction with drawings and the specific embodiments, this utility model is described in further detail.
Accompanying drawing explanation
Fig. 1 is the electromotor WIFI intelligence control system block diagram of the present embodiment;
Fig. 2 is the electromotor WIFI intelligence control system schematic diagram of the present embodiment.
Detailed description of the invention
As shown in Figure 1-2, electromotor WIFI intelligence control system, including supply module 1, data acquisition module 2, start control module 3, flame-out control module 4, MCU module 5, signal transmitting and receiving module 6 and mobile phone 7.Wherein, described data acquisition module 2, startup control module 3, flame-out control module 4, signal transmitting and receiving module 6 are connected with MCU module 5 respectively, described mobile phone 7 is respectively each module for power supply in intelligence control system with signal transmitting and receiving module 6 by WIFI radio communication, described supply module 1.
In the present embodiment, the electromotor storage battery F1 positive pole of described supply module 1 is extremely connected by the E of the first diode D1 and the Q1 of the first transistor, first electric capacity C1 is parallel between negative electrode and the ground of the first diode D1, first resistance R1 is connected in the negative electrode of the first diode D1 and the K pole of transistor seconds Q2, second resistance R2 and the common port of the 3rd resistance R3 are extremely connected with the B of third transistor Q3, the C pole of third transistor Q3 is extremely connected with the B of the first transistor Q1, the G pole by the 4th resistance R4 and transistor seconds Q2, the C pole of the first transistor Q1, 5th resistance is connected, the C pole of the first transistor Q1 simultaneously with 1 foot of three terminal regulator F2, second electric capacity C2, 3rd electric capacity C3 is connected.Second electric capacity C2 is electrochemical capacitor, and the 3rd electric capacity C3 is ceramic disc capacitor, all has filter action.3 feet of three terminal regulator F2 and the 4th electric capacity C4 are connected, and 2 feet of three terminal regulator F2, the A pole of transistor seconds Q2, the E pole of third transistor Q3 are all connected with ground wire.First diode D1 and the first electric capacity C1 forms current rectifying and wave filtering circuit, and the first transistor Q1, transistor seconds Q2, third transistor Q3, the first resistance R1, the second resistance R2, the 3rd resistance R3, the 4th resistance R4, the 5th resistance R5 form serial regulating circuit.Electromotor storage battery F1 electric current exports stable 5V unidirectional current after current rectifying and wave filtering circuit rectifying and wave-filtering, serial regulating circuit and three terminal regulator voltage stabilizing, can be to power elements such as MUC, it is ensured that the stabilization member such as MUC run reliably.
nullThe generator output end mouth F3 of above-mentioned data acquisition module 2 is connected by the 7th resistance R7 and the first voltage sensor T1,Generator output passes the first current sensor J1,6th resistance R6 is parallel to the first current sensor J1,First current sensor J1 is connected with MCU module 5,For gathering dynamo current signal,First operational amplifier U1 and the first voltage sensor T1 is connected,5th electric capacity C5、8th resistance R8 is parallel to the first operational amplifier U1 two ends,First operational amplifier U1 outfan is connected by the 9th resistance R9 and the second operational amplifier U2,3rd operational amplifier U3 and the 11st resistance R11、12nd resistance R12 one voltage follower of composition is also connected with the second operational amplifier U2,6th electric capacity C6 is connected between the 3rd operational amplifier U3 outfan and ground wire.6th electric capacity is filter capacitor, plays the effect of stable reference voltage.Described data acquisition module 2 is used for gathering dynamo current, voltage signal, and is transferred to MCU module 5.
Above-mentioned control starts the motor drive ic F5 of module 3 and is connected with motor F6,19th resistance R19 one end connects MCU, one end is extremely connected with the B of the 7th transistor Q7, the E pole of the 7th transistor Q7 is connected with ground wire, the C pole of the 7th transistor Q7 is connected with actuating coil F8, the 20th resistance R20, the other end of the 20th resistance R20 is extremely connected with the 21st resistance R21, the B of the 8th transistor Q8 respectively, the E pole of the 8th transistor Q8 is connected with ground wire, and the C pole of the 8th transistor Q8 is connected by the outfan of the 22nd resistance R22 and three terminal regulator F2.7th transistor Q7 is as main switch, and the 8th transistor Q8, the 20th resistance R20, the 2nd 1 resistance R21, the 22nd resistance R22 form signal acquisition circuit, gathers electromotor enabling signal and is supplied to MCU module 5.In the present embodiment, described motor drive ic F5 uses the TD62003AFG, motor drive ic F5 of TOSHIBA drive stepping motor F6 to work reliably, and motor F6 plays the effect of regulator generator throttle opening size.No matter under any state, rationally it is accurately controlled by MCU module 5, it is ensured that electromotor starts normal reliable.
nullAbove-mentioned control stop working module 4 the 6th transistor Q6 K pole respectively with the tenth electric capacity C10、The anode of the second diode D2、14th resistance R14、15th resistance R15、Electromotor high voltage package F7 is connected,The G pole of the 6th transistor Q6、Tenth electric capacity C10、The negative electrode of the second diode D2、11st electric capacity C11、The E pole of the 5th transistor Q5 is connected with ground wire,7th electric capacity C7 is parallel between K pole and the G pole of the 4th transistor Q4,The anode of the 3rd stabilivolt D3 and the 15th resistance R15、9th electric capacity C9 is connected,The negative electrode of the 3rd stabilivolt D3 and the 17th resistance R17、16th resistance R16 is connected,The other end of the 16th resistance R16 and the 8th electric capacity C8、The B of the 5th transistor Q5 is the most connected,The 18th resistance R18 and the 17th resistance R17 is passed through in the C pole of the 5th transistor Q5、The outfan of three terminal regulator F2 is connected.6th transistor is as main switch, after MCU output misfire signals, 4th transistor Q4 conducting, electromotor high voltage package F7 positive pulse gives the 11st electric capacity C11 charging, when electromotor high voltage package F7 negative pulse, 11st electric capacity C11 provides to the 6th transistor Q6 and triggers signal so that the 6th transistor Q6 conducting, controls electromotor and stops working.
Above-mentioned MCU module 5 includes MCU F4, MCU uses 16 single-chip microcomputer DSPIC30F3013 of 28 pin that U.S. Microchip produces, it is connected with the first current sensor J1, the first operational amplifier U1, the second operational amplifier U2, driving chip F5, signal transmitting and receiving module F9, and the most connected by the 13rd resistance R13 and the 4th transistor Q4 G.
Above-mentioned signal transmitting and receiving module 6 uses WIFI module, the concrete USR-WIFI232-B module using Jinan You Ren technology of Internet of things company limited to produce.
The operation principle of above-mentioned electromotor WIFI intelligence control system: after system electrification, WIFI chip in signal transmitting and receiving module 6 sets up AP network, the MCU module 5 of internal system initializes peripheral apparatus, the output voltage of electromotor, electric current, power, operation time are sampled, calculates, it is transferred to mobile phone 7, and the enabling signal of mobile phone 7 whether moment inquiry receives, if the enabling signal of receiving, by starting control module 3 starter-generator, and detect generator speed signal to judge whether electromotor starts normally.When electromotor is properly functioning, data acquisition module 2 moment gathers the output voltage of electromotor, electric current etc., and it is transferred to mobile phone 7 after being sent to MCU module 5 analytical calculation, and the misfire signals of mobile phone 7 whether moment inquiry receives, if receiving flame-out generator signal, by flame-out control module 4, electromotor is stopped working, and detect generator speed signal to judge that electromotor is the most flame-out normal.In generator operation, system can also arrange to have a try and gather amount of gasoline and the oil level of electromotor, once detects that the amount of gasoline of electromotor or oil level are less than setting value, by reporting to the police to mobile phone 7 at once, reminds client, it should add gasoline or machine oil.
Electromotor WIFI intelligence control system described in the present embodiment is intelligent, and safety, the aspect such as comfortableness all improves significantly.User can be by the handset starting of oneself or flame-out electromotor, the most intelligent, need not on-the-spot startup or flame-out electromotor, also avoid the need for bearing the big noise of electromotor, heavy-tailed gas, safety is the highest, by checking the mobile phone of oneself, just can know the running status of electromotor, output voltage, electric current easily, bearing power, separate run times and accumulated running time etc..
Above-described embodiment and graphic and non-limiting product form of the present utility model and style, suitably change that it is done by any person of an ordinary skill in the technical field or modify, all should be regarded as without departing from patent category of the present utility model.
Claims (7)
1. an electromotor WIFI intelligence control system, it is characterized in that: include supply module, data acquisition module, startup control module, flame-out control module, MCU module, signal transmitting and receiving module and mobile control end, wherein, described data acquisition module, startup control module, flame-out control module, signal transmitting and receiving module are connected with MCU module respectively, the described mobile end that controls passes through WIFI radio communication with signal transmitting and receiving module, and described supply module is the module for power supply in intelligence control system.
2. a kind of electromotor WIFI intelligence control system as claimed in claim 1, it is characterized in that: described supply module includes electromotor storage battery, current rectifying and wave filtering circuit, serial regulating circuit and three terminal regulator, electromotor storage battery electric current exports galvanic current after current rectifying and wave filtering circuit rectifying and wave-filtering, serial regulating circuit and three terminal regulator voltage stabilizing.
3. a kind of electromotor WIFI intelligence control system as claimed in claim 1, it is characterized in that: described data acquisition module includes current sensor, voltage sensor and operational amplifier, wherein, described current sensor gathers output generator current, and the current signal collected is sent to MCU module, described voltage sensor gathers generator output voltage, and after operational amplifier amplifies, the voltage signal collected is input to MCU module.
4. a kind of electromotor WIFI intelligence control system as claimed in claim 1, it is characterized in that: described startup control module includes motor drive ic, motor, electromotor actuating coil, described motor is connected with MCU module by motor drive ic, and electromotor actuating coil is connected with MCU module by switching tube.
5. electromotor WIFI intelligence control system as claimed in claim 1 a kind of, it is characterised in that: described control module of stopping working is connected with electromotor high voltage package and MCU module, respectively including several interconnective transistors, resistance, electric capacity and Zener diode.
6. a kind of electromotor WIFI intelligence control system as claimed in claim 1, it is characterised in that: described MCU module uses model to be the single-chip microcomputer of DSPIC30F3013.
7. a kind of electromotor WIFI intelligence control system as claimed in claim 1, it is characterised in that: described signal transmitting and receiving module uses WIFI module.
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CN108294496A (en) * | 2018-03-26 | 2018-07-20 | 河南科技学院 | A kind of management cabinet for books |
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CN108294496A (en) * | 2018-03-26 | 2018-07-20 | 河南科技学院 | A kind of management cabinet for books |
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