CN203965858U - A kind of greenhouse actuator controller - Google Patents

A kind of greenhouse actuator controller Download PDF

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Publication number
CN203965858U
CN203965858U CN201420296070.1U CN201420296070U CN203965858U CN 203965858 U CN203965858 U CN 203965858U CN 201420296070 U CN201420296070 U CN 201420296070U CN 203965858 U CN203965858 U CN 203965858U
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China
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phase
motor
microcontroller
magnetic latching
power module
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CN201420296070.1U
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Chinese (zh)
Inventor
高一川
陈鸿
万勇
周朝
柳竞林
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WUHAN CITY INST OF AGRICULTURAL MECHANIZATION SCIENCE
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WUHAN CITY INST OF AGRICULTURAL MECHANIZATION SCIENCE
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Abstract

A kind of greenhouse actuator controller, comprises power module, No. five magnetic latching relays, relay drive unit, zero passage detection unit, mutual inductor, sample detecting unit, communication unit, data memory module and microcontroller; Power module is connected with three-phase supply; The IO interface of microcontroller is connected Hou Yu No. five magnetic latching relays coil with relay drive unit connects, and the contact of No. five magnetic latching relays connects respectively a certain phase of three-phase supply and a certain phase of motor; The primary side of mutual inductor is connected with the triple-phase line of motor, secondary side is connected with zero passage detection unit, sample detecting unit respectively; Zero passage detection unit is connected with microcontroller external interrupt mouth INT, and sample detecting unit is connected with the SPI interface of microcontroller, and data memory module, communication unit are all connected with microcontroller.The utility model is realized actuator current zero crossing and is cut off, and avoids contact to produce arc phenomenon, improves the stability of whole controller and increases the service life.

Description

A kind of greenhouse actuator controller
Technical field
The utility model relates to greenhouse topworks field, is specifically related to a kind of greenhouse actuator controller.
Background technology
The topworks of modern greenhouse mainly contains skylight, side window, blower fan, water pump, inside and outside sunshade net etc., and wherein most equipment transfers driving by three phase electric machine positive and negative.At present, general control method is to be equipped with corresponding electric control cabinet according to the kind of greenhouse topworks and quantity, its principle is to connect to come drive motor running by fuse, contactor and relay according to certain mode of connection, more manually controls topworks by the external switch of electric control cabinet.
Along with the development of Status quo of Greenhouse Environment Control Technology, greenhouse automatic control and remote network control are applied to modern intelligent greenhouse field gradually.Existing greenhouse control mode is on original electric control cabinet basis, is equipped with corresponding light current-forceful electric power translation interface, and computing machine is again by corresponding light current-forceful electric power translation interface control greenhouse topworks.Traditional greenhouse actuating mechanism controls device mainly relies on the control of analog switch device, though there is certain automaticity, also exist shortcomings:
1, analog switch device easily damages, and reliability is low; In the time that topworks needs start and stop or rotating to switch, because motor capacity is large, frequent start-stop operation, easily cause the main contact of contactor to produce electric arc, electric arc is the free gas of high temperature high conductivity, it not only has very large destruction to contact, and the time lengthening that circuit is disconnected, thereby have a strong impact on stability and the serviceable life of whole opertaing device;
2, light current-forceful electric power conversion functional module device of control device is many, and therefore the connection more complicated between each functional module device relates to the workload that original power distribution cabinet is transformed large, wiring complexity, and reliability is low.
Summary of the invention
The technical problems to be solved in the utility model is, for traditional greenhouse actuating mechanism controls device above shortcomings, a kind of greenhouse actuator controller is provided, realizing actuator current zero crossing cuts off, avoid contact to produce arc phenomenon, improve the stability of whole controller and increase the service life.
The utility model for solving the problems of the technologies described above adopted technical scheme is:
A kind of greenhouse actuator controller, comprises power module, No. five magnetic latching relay K1, K2, K3, K4, K5, relay drive unit, zero passage detection unit, mutual inductor, sample detecting unit, communication unit, data memory module and microcontroller; Described power module is connected with three-phase supply; Relay drive unit, zero passage detection unit, sample detecting unit, communication unit, data memory module and microcontroller are all connected with power module; The IO interface of microcontroller is connected with relay drive unit, the relay drive unit respectively coil of Yu Wu road magnetic latching relay K1, K2, K3, K4, K5 connects, contact S1, the S2 of No. five magnetic latching relays, S3, S4, the S5 a certain phase of corresponding connection three-phase supply and a certain phase of motor respectively; The primary side of described mutual inductor is connected with the triple-phase line of motor, and the secondary side of mutual inductor is connected with zero passage detection unit, sample detecting unit respectively; Described zero passage detection unit is connected with microcontroller external interrupt mouth INT, sample detecting unit is connected with the SPI interface of microcontroller, data memory module is connected with microcontroller by I2C interface, and communication unit is connected with microcontroller by USART interface.
Press such scheme, the contact S1 of described magnetic latching relay K1 connects U phase and the motor U phase of three-phase supply, the contact S2 of magnetic latching relay K2 connects V phase and the motor V phase of three-phase supply, the contact S3 of magnetic latching relay K3 connects W phase and the motor W phase of three-phase supply, the contact S4 of magnetic latching relay K4 connects W phase and the motor V phase of three-phase supply, and the contact S5 of magnetic latching relay K5 connects V phase and the motor W phase of three-phase supply.
Press such scheme, described power module comprises power protection interface, AC-DC power module, DC-DC power module, from between any phase line of three-phase supply and zero line, get the input of phase voltage as power module, power protection interface is for carrying out overcurrent, overvoltage protection to input power, the output of power protection interface, as the input of AC-DC power module, realizes 220V alternating current is converted to 12V direct current; 12V direct current is used for driving No. five magnetic latching relays on the one hand, as the input of DC-DC power module, DC-DC power module is for changing into 12V direct current in 3.3V direct current to microcontroller, sample detecting unit, zero passage detection unit, communication unit, data memory module power supply on the other hand.
Press such scheme, described AC-DC power module adopts the LH10-10B12 power module of Jin Shengyang company, and DC-DC power module adopts the B_S-2W power module of Jin Shengyang company.
Press such scheme, described No. five magnetic latching relay K1, K2, K3, K4, K5 adopt the good WJ31F type relay in Shanghai ten thousand.
Press such scheme, described relay drive unit comprises five road H bridge driving circuits, for driving respectively corresponding Wu road magnetic latching relay K1, K2, K3, K4, the closure of K5 and disconnection, every road H bridge driving circuit is by photoelectrical coupler Opt1, Opt2, triode Q1, Q2, Q3, Q4, resistance R 1, R2 composition, triode Q1, Q2, Q3, Q4 and resistance R 1, R2 forms H bridge circuit, microcontroller passes through IO_A, two IO interfaces of IO_B respectively with photoelectrical coupler Opt1, Opt2 connects, photoelectrical coupler Opt1, the output terminal of Opt2 is connected to respectively the two-way control end of H bridge circuit again.
Press such scheme, described mutual inductor comprises Current Transmit, voltage transformer pt, the primary side of described Current Transmit is connected with the triple-phase line of motor, its secondary side is connected with zero passage detection unit, sample detecting unit, Current Transmit accesses sample load RL after gathering motor AC current signal, convert motor AC current signal to motor ac voltage signal, motor ac voltage signal one road is connected to zero passage detection unit, and another road is connected to sample detecting unit; The primary side of described voltage transformer pt is connected with the triple-phase line of motor, and its secondary is surveyed and is connected with sample detecting unit, and voltage transformer pt is connected to sample detecting unit after gathering motor ac voltage signal;
Described zero passage detection unit comprises the magnifier, clamper filtering circuit, the voltage comparator circuit that connect successively, described magnifier comprises instrument amplifier AD623, clamper filtering circuit is connected by two voltage stabilizing diode D2.1, D2.2 clamper, and voltage comparator circuit comprises voltage comparator LM339;
Described sample detecting unit comprises voltage difference filtering circuit, current-differencing filtering circuit, sampling A/D chip, and motor AC current signal is delivered to current-differencing filtering circuit after Current Transmit sampling, and the filtering signal of output is delivered to sampling A/D chip again; Motor ac voltage signal is delivered to voltage difference filtering circuit after voltage transformer pt sampling, and the filtering signal of output is delivered to sampling A/D chip again; The sampled data of sampling A/D chip output is connected with microcontroller by SPI interface.
Press such scheme, described sampling A/D chip adopts watt metering chip ATT7022.
Press such scheme, described microcontroller adopts 32 ARM7 core processors, and model is STM32F103VET6.
Press such scheme, described data memory module adopts the storage chip that memory capacity is 512M; Described communication unit comprises RS485 communication module, wireless communication module, and RS485 communication module is connected with microcontroller by USART interface with wireless communication module.
Principle of work of the present utility model: power module provides stable direct current 12V power supply and direct current 3.3V power supply for whole controller, and data memory module is used for storing address, the electrical energy parameter of electrical consumption etc. of this controller; The electrical energy parameter of sampling A/D chip real-time online measuring motor operation, understands the operation conditions of motor in real time.As needing motor forward to start, microcontroller is by relay drive unit closed K1, K2, K3San road magnetic latching relay; As need motor reversal to start, microcontroller, by relay drive unit closed K1, K4, K5San road magnetic latching relay, is realized motor reversal by putting upside down phase sequence; As need stop motor operation, microcontroller, by the zero passage detection unit inspection phase line current zero-crossing point moment, then disconnects corresponding magnetic latching relay immediately, realizes circuit and cuts off without arc; If there is phenomenons such as under-voltage, overvoltage, phase shortage, overcurrents, microcontroller is carried out relay rupturing operation immediately, and motor is protected.
The utlity model has following beneficial effect:
(1) the utility model controller, by controlling the running of topworks's motor, is realized opening, stopping and forward and backward operation greenhouse topworks; Especially microcontroller can be realized the cut-out of actuator current zero crossing, has avoided contact to produce arc phenomenon, thereby has improved the stability of whole controller and increase the service life;
(2) the built-in sample detecting of the utility model unit; can real-time online measuring motor the electrical energy parameter of operation; as finding that there is abnormal conditions generations (overvoltage, overcurrent, under-voltage), controller can be carried out rupturing operation in time, the safety of protection motor and personnel, equipment.
Brief description of the drawings
Fig. 1 is the one-piece construction schematic diagram of the utility model greenhouse actuator controller;
Fig. 2 is the circuit structure wiring diagram of the utility model relay drive unit and magnetic latching relay;
Fig. 3 is the work structuring schematic diagram of the utility model zero passage detection unit;
Fig. 4 is the circuit structure wiring diagram of the utility model zero passage detection unit;
Fig. 5 is the work structuring schematic diagram of the utility model sample detecting unit.
Embodiment
Below in conjunction with drawings and Examples, the utility model is elaborated.
Shown in Figure 1, greenhouse described in the utility model actuator controller, comprises power module, No. five magnetic latching relay K1, K2, K3, K4, K5, relay drive unit, zero passage detection unit, mutual inductor, sample detecting unit, communication unit, data memory module and microcontroller; Described power module is connected with three-phase supply; Relay drive unit, zero passage detection unit, sample detecting unit, communication unit, data memory module and microcontroller are all connected with power module; The IO interface of microcontroller is connected with relay drive unit, the relay drive unit respectively coil of Yu Wu road magnetic latching relay K1, K2, K3, K4, K5 connects, contact S1, the S2 of No. five magnetic latching relays, S3, S4, the S5 a certain phase of corresponding connection three-phase supply and a certain phase of motor respectively; The primary side of described mutual inductor is connected with the triple-phase line of motor, and the secondary side of mutual inductor is connected with zero passage detection unit, sample detecting unit respectively; Described zero passage detection unit is connected with microcontroller external interrupt mouth INT, sample detecting unit is connected with the SPI interface of microcontroller, data memory module is connected with microcontroller by I2C interface, and communication unit is connected with microcontroller by USART interface.
The contact S1 of described magnetic latching relay K1 connects U phase and the motor U phase of three-phase supply, the contact S2 of magnetic latching relay K2 connects V phase and the motor V phase of three-phase supply, the contact S3 of magnetic latching relay K3 connects W phase and the motor W phase of three-phase supply, the contact S4 of magnetic latching relay K4 connects W phase and the motor V phase of three-phase supply, and the contact S5 of magnetic latching relay K5 connects V phase and the motor W phase of three-phase supply.
Described power module comprises power protection interface, AC-DC (interchange turns direct current) power module, DC-DC (DC-DC) power module, from between any phase line of three-phase supply and zero line, get the input of phase voltage as power module, power protection interface is for carrying out overcurrent, overvoltage protection to input power, the output of power protection interface, as the input of AC-DC power module, realizes 220V alternating current is converted to 12V direct current; 12V direct current is used for driving No. five magnetic latching relays on the one hand, as the input of DC-DC power module, DC-DC power module is for changing into 12V direct current in 3.3V direct current to microcontroller, sample detecting unit, zero passage detection unit, communication unit, data memory module power supply on the other hand.
Described AC-DC power module adopts the LH10-10B12 power module of Jin Shengyang company, and DC-DC power module adopts the B_S-2W power module of Jin Shengyang company.
Described No. five magnetic latching relay K1, K2, K3, K4, K5 adopt the good WJ31F type relay in Shanghai ten thousand, coil control voltage DC12V, nominal load 80A/250VAC, the action of magnetic latching relay opening and closing adopts forward and reverse 12V DC pulse drive coil, DC pulse need maintain 150ms, and the magnetic force that the opening and closing state after its action produces by permanent-magnet steel keeps.
Described relay drive unit comprises five road H bridge driving circuits, for driving respectively corresponding Wu road magnetic latching relay K1, K2, K3, K4, the closure of K5 and disconnection, shown in Fig. 2, every road H bridge driving circuit is by photoelectrical coupler Opt1, Opt2, triode Q1, Q2, Q3, Q4, resistance R 1, R2 composition, triode Q1, Q2, Q3, Q4 and resistance R 1, R2 forms H bridge circuit, and microcontroller passes through IO_A, two IO interfaces of IO_B respectively with photoelectrical coupler Opt1, Opt2 connects, photoelectrical coupler Opt1, the output terminal of Opt2 is connected to respectively the two-way control end of H bridge circuit again, specific works process is: in the time of the magnetic latching relay of closed certain road of needs, the IO_A interface output high level that microcontroller control is corresponding, IO_B interface output low level, now photoelectrical coupler Opt1 conducting, photoelectrical coupler Opt2 cut-off, cause triode Q1 and Q4 conducting simultaneously, Q2 and Q3 cut-off, the R_A of magnetic latching relay and R_B two ends form forward 12V voltage, and microcontroller keeps IO_A, the output of IO_B interface 150ms, magnetic latching relay closure, in the time that needs disconnect this road magnetic latching relay, the IO_A interface output low level that microcontroller control is corresponding, IO_B interface output high level, now photoelectrical coupler Opt1 cut-off, photoelectrical coupler Opt2 conducting causes triode Q1 and Q4 cut-off simultaneously, Q2 and Q3 conducting, the R_A of magnetic latching relay and R_B two ends form reverse 12V voltage, and microcontroller keeps IO_A and IO_B interface output 150ms, and magnetic latching relay disconnects.
Described mutual inductor comprises Current Transmit, voltage transformer pt, the primary side of described Current Transmit is connected with the triple-phase line of motor, its secondary side and zero passage detection unit, sample detecting unit connects, Current Transmit accesses sample load RL (in embodiment, RL gets 200 Ω) after gathering motor AC current signal, convert motor AC current signal to motor ac voltage signal, motor ac voltage signal one road is connected to zero passage detection unit (for zero passage detection), another road is connected to sample detecting unit (for electrical energy parameter on-line measurement), the primary side of described voltage transformer pt is connected with the triple-phase line of motor, and its secondary is surveyed and is connected with sample detecting unit, and voltage transformer pt is connected to sample detecting unit after gathering motor ac voltage signal,
Shown in Fig. 3, described zero passage detection unit comprises the magnifier, clamper filtering circuit, the voltage comparator circuit that connect successively, described magnifier comprises instrument amplifier AD623 and peripheral circuit thereof, clamper filtering circuit is connected by two voltage stabilizing diode D2.1, D2.2 clamper, and voltage comparator circuit comprises voltage comparator LM339 and peripheral circuit thereof;
Described sample detecting unit comprises voltage difference filtering circuit, current-differencing filtering circuit, sampling A/D chip, as shown in Figure 5, motor AC current signal is delivered to current-differencing filtering circuit after Current Transmit sampling, and the filtering signal of output is delivered to sampling A/D chip again; Motor ac voltage signal is delivered to voltage difference filtering circuit after voltage transformer pt sampling, and the filtering signal of output is delivered to sampling A/D chip again; The sampled data of sampling A/D chip output is connected with microcontroller by SPI interface.
Zero passage detection unit is used for realizing the conditioning of alternating current crossover point signal, specific works process: shown in Fig. 4, (Current Transmit is connected on Ui to the sampling of motor AC current signal process Current Transmit, Ui ' two ends), be output as motor ac voltage signal (sinusoidal signal) through sampling load RL two ends, by instrument amplifier, AD623 follows output, improve the input impedance of zero passage detection unit, again by voltage stabilizing diode D2.1, D2.2 clamper, again signal is delivered to the in-phase end ("+") and end of oppisite phase ("-") of voltage comparator LM339, using end of oppisite phase as with reference to voltage, in-phase end is as voltage signal to be compared, when in-phase end ("+") voltage is during higher than end of oppisite phase ("-") voltage, and voltage comparator LM339 output terminal output open circuit, when "-" terminal voltage is during higher than "+" terminal voltage, voltage comparator LM339 output terminal output electronegative potential, in addition, voltage comparator LM339 output terminal draws a resistance R 2.5 to positive supply, is positive supply output while guaranteeing voltage comparator LM339 output open circuit.Therefore, when motor ac voltage signal (sinusoidal signal) is during in positive half period (Ui>0), voltage comparator LM339 output positive supply (the positive half cycle of square wave), when motor ac voltage signal (sinusoidal signal) is during in negative half-cycle (Ui<0), voltage comparator LM339 output electronegative potential (negative half period of square wave); In other words, the motor ac voltage signal (sinusoidal signal) that Current Transmit is exported through sampling load RL is shaped as the square-wave signal of standard behind zero passage detection unit, and the sinusoidal zero crossing of motor ac voltage signal and the negative edge of square-wave signal overlap, this square-wave signal is delivered to microcontroller external interrupt mouth INT, now microcontroller disconnect corresponding magnetic latching relay (K1, K2, K3 or K1, K4, K5) just can realize zero current cut off, produce without arc phenomenon.
Described sampling A/D chip adopts watt metering chip ATT7022, ATT7022 can measure each phase and close the active power of phase, reactive power, meritorious energy and quadergy etc., can also measure the parameters such as each phase current, voltage effective value, power factor (PF), frequency simultaneously.
Described microcontroller adopts 32 ARM7 core processors, and model is STM32F103VET6, and its performance is strong, low in energy consumption.
Operational factor and the electrical energy parameter data of described data memory module for storing motor, data memory module adopts the storage chip that memory capacity is 512M; Described communication unit comprises RS485 communication module, wireless communication module, USART interface comprises USART1 interface (wireline interface), USART2 interface (wave point), RS485 communication module is connected with microcontroller by USART1 interface, USART2 interface respectively with wireless communication module, and wireline interface and wave point provide several data transmission mode for this controller.
The utility model power module provides stable direct current 12V power supply and direct current 3.3V power supply for whole controller, and data memory module is used for storing address, the electrical energy parameter of electrical consumption etc. of this controller; The electrical energy parameter of sampling A/D chip real-time online measuring motor operation, understands the operation conditions of motor in real time.As needing motor forward to start, microcontroller is by relay drive unit closed K1, K2, K3San road magnetic latching relay; As need motor reversal to start, microcontroller, by relay drive unit closed K1, K4, K5San road magnetic latching relay, is realized motor reversal by putting upside down phase sequence; As need stop motor operation, microcontroller, by the zero passage detection unit inspection phase line current zero-crossing point moment, then disconnects corresponding magnetic latching relay immediately, realizes circuit and cuts off without arc; If there is phenomenons such as under-voltage, overvoltage, phase shortage, overcurrents, microcontroller is carried out relay rupturing operation immediately, and motor is protected.
Above-described is only preferred embodiment of the present utility model, certainly can not limit with this interest field of the utility model, and the equivalence of therefore doing according to the utility model claim changes, and still belongs to protection domain of the present utility model.

Claims (10)

1. a greenhouse actuator controller, is characterized in that: comprise power module, No. five magnetic latching relay K1, K2, K3, K4, K5, relay drive unit, zero passage detection unit, mutual inductor, sample detecting unit, communication unit, data memory module and microcontroller; Described power module is connected with three-phase supply; Relay drive unit, zero passage detection unit, sample detecting unit, communication unit, data memory module and microcontroller are all connected with power module; The IO interface of microcontroller is connected with relay drive unit, the relay drive unit respectively coil of Yu Wu road magnetic latching relay K1, K2, K3, K4, K5 connects, contact S1, the S2 of No. five magnetic latching relays, S3, S4, the S5 a certain phase of corresponding connection three-phase supply and a certain phase of motor respectively; The primary side of described mutual inductor is connected with the triple-phase line of motor, and the secondary side of mutual inductor is connected with zero passage detection unit, sample detecting unit respectively; Described zero passage detection unit is connected with microcontroller external interrupt mouth INT, sample detecting unit is connected with the SPI interface of microcontroller, data memory module is connected with microcontroller by I2C interface, and communication unit is connected with microcontroller by USART interface.
2. greenhouse according to claim 1 actuator controller, it is characterized in that: the contact S1 of described magnetic latching relay K1 connects U phase and the motor U phase of three-phase supply, the contact S2 of magnetic latching relay K2 connects V phase and the motor V phase of three-phase supply, the contact S3 of magnetic latching relay K3 connects W phase and the motor W phase of three-phase supply, the contact S4 of magnetic latching relay K4 connects W phase and the motor V phase of three-phase supply, and the contact S5 of magnetic latching relay K5 connects V phase and the motor W phase of three-phase supply.
3. greenhouse according to claim 1 actuator controller, it is characterized in that: described power module comprises power protection interface, AC-DC power module, DC-DC power module, from between any phase line of three-phase supply and zero line, get the input of phase voltage as power module, power protection interface is for carrying out overcurrent, overvoltage protection to input power, the output of power protection interface, as the input of AC-DC power module, realizes 220V alternating current is converted to 12V direct current; 12V direct current is used for driving No. five magnetic latching relays on the one hand, as the input of DC-DC power module, DC-DC power module is for changing into 12V direct current in 3.3V direct current to microcontroller, sample detecting unit, zero passage detection unit, communication unit, data memory module power supply on the other hand.
4. greenhouse according to claim 3 actuator controller, is characterized in that: described AC-DC power module adopts the LH10-10B12 power module of Jin Shengyang company, and DC-DC power module adopts the B_S-2W power module of Jin Shengyang company.
5. greenhouse according to claim 1 actuator controller, is characterized in that: described No. five magnetic latching relay K1, K2, K3, K4, K5 adopt the good WJ31F type relay in Shanghai ten thousand.
6. greenhouse according to claim 1 actuator controller, it is characterized in that: described relay drive unit comprises five road H bridge driving circuits, for driving respectively corresponding Wu road magnetic latching relay K1, K2, K3, K4, the closure of K5 and disconnection, every road H bridge driving circuit is by photoelectrical coupler Opt1, Opt2, triode Q1, Q2, Q3, Q4, resistance R 1, R2 composition, triode Q1, Q2, Q3, Q4 and resistance R 1, R2 forms H bridge circuit, microcontroller passes through IO_A, two IO interfaces of IO_B respectively with photoelectrical coupler Opt1, Opt2 connects, photoelectrical coupler Opt1, the output terminal of Opt2 is connected to respectively the two-way control end of H bridge circuit again.
7. greenhouse according to claim 1 actuator controller, it is characterized in that: described mutual inductor comprises Current Transmit, voltage transformer pt, the primary side of described Current Transmit is connected with the triple-phase line of motor, its secondary side is connected with zero passage detection unit, sample detecting unit, Current Transmit accesses sample load RL after gathering motor AC current signal, convert motor AC current signal to motor ac voltage signal, motor ac voltage signal one road is connected to zero passage detection unit, and another road is connected to sample detecting unit; The primary side of described voltage transformer pt is connected with the triple-phase line of motor, and its secondary is surveyed and is connected with sample detecting unit, and voltage transformer pt is connected to sample detecting unit after gathering motor ac voltage signal;
Described zero passage detection unit comprises the magnifier, clamper filtering circuit, the voltage comparator circuit that connect successively, described magnifier comprises instrument amplifier AD623, clamper filtering circuit is connected by two voltage stabilizing diode D2.1, D2.2 clamper, and voltage comparator circuit comprises voltage comparator LM339;
Described sample detecting unit comprises voltage difference filtering circuit, current-differencing filtering circuit, sampling A/D chip, and motor AC current signal is delivered to current-differencing filtering circuit after Current Transmit sampling, and the filtering signal of output is delivered to sampling A/D chip again; Motor ac voltage signal is delivered to voltage difference filtering circuit after voltage transformer pt sampling, and the filtering signal of output is delivered to sampling A/D chip again; The sampled data of sampling A/D chip output is connected with microcontroller by SPI interface.
8. greenhouse according to claim 7 actuator controller, is characterized in that: described sampling A/D chip adopts watt metering chip ATT7022.
9. greenhouse according to claim 1 actuator controller, is characterized in that: described microcontroller adopts 32 ARM7 core processors, and model is STM32F103VET6.
10. greenhouse according to claim 1 actuator controller, is characterized in that: described data memory module adopts the storage chip that memory capacity is 512M; Described communication unit comprises RS485 communication module, wireless communication module, and RS485 communication module is connected with microcontroller by USART interface with wireless communication module.
CN201420296070.1U 2014-06-05 2014-06-05 A kind of greenhouse actuator controller Withdrawn - After Issue CN203965858U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104007688A (en) * 2014-06-05 2014-08-27 武汉市农业机械化科学研究所 Greenhouse actuator controller
CN104542104A (en) * 2015-01-22 2015-04-29 潘大丰 Greenhouse quilt reeling control device
CN106681205A (en) * 2016-12-15 2017-05-17 电子科技大学 Measuring meter for controlling forward and reverse rotation of integrated motor
CN111294988A (en) * 2020-03-17 2020-06-16 佛山乔光科技有限公司 Safe and reliable long-life high-power constant-temperature heating controller

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104007688A (en) * 2014-06-05 2014-08-27 武汉市农业机械化科学研究所 Greenhouse actuator controller
CN104542104A (en) * 2015-01-22 2015-04-29 潘大丰 Greenhouse quilt reeling control device
CN104542104B (en) * 2015-01-22 2017-04-05 潘大丰 A kind of warmhouse booth rolls up controlled device
CN106681205A (en) * 2016-12-15 2017-05-17 电子科技大学 Measuring meter for controlling forward and reverse rotation of integrated motor
CN111294988A (en) * 2020-03-17 2020-06-16 佛山乔光科技有限公司 Safe and reliable long-life high-power constant-temperature heating controller

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