CN1480580A - System for automatic detecting and controlling power supply frequency and method applied to waching machine - Google Patents

System for automatic detecting and controlling power supply frequency and method applied to waching machine Download PDF

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Publication number
CN1480580A
CN1480580A CNA021346356A CN02134635A CN1480580A CN 1480580 A CN1480580 A CN 1480580A CN A021346356 A CNA021346356 A CN A021346356A CN 02134635 A CN02134635 A CN 02134635A CN 1480580 A CN1480580 A CN 1480580A
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supply frequency
washing machine
signal
microcomputer
control
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CN1260422C (en
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朱健昭
镡丹中
陈克坚
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Jinling Electrical Co Ltd
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Jinling Electrical Co Ltd
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Abstract

An automatic power frequency detecting and controlling system for allowing a washer to work at different frequencies is composed of the electronic unit consisting of power frequency detector, other detecting devices and microcomputer, and the washer driver consisting of electric motor and others. Its method includes sampling the frequency signal of AC power supply, processing, sending it to microcomputer, judging and controlling the signal, and converting it to control instruction for controlling the motor of washer.

Description

The system and method that is used for the supply frequency Automatic Detection and Control of washing machine
One, technical field
The present invention relates to a kind of system and method for supply frequency of washing machine, refer in particular to a kind of system and method that is used for the supply frequency Automatic Detection and Control of washing machine.
Two, background technology
Present most electric washer all usability is answered Asynchronous Motor Driving.Because the AC power used of each department has 50Hz or the equifrequent difference of 60Hz in the world, therefore causes the difference of motor synchronous rotational speed, when same washing machine uses in different areas, the rotating speed of motor and and moment notable difference is arranged, influence operational effect.Washing machine manufactory will be the products export of same mechanical structure to different when regional, generally will be according to different supply frequencies in fixing corresponding the reaching of control circuit to operation time parameters near running effect, machine design is become different models, to keep close running effect.This has just reduced the versatility of product.
Chinese patent ZL97122989.9 discloses a kind of operation controller of washing machine, and by detecting the counter electromotive force after motor cuts off the power supply, the running time of FEEDBACK CONTROL motor is to eliminate the influence of different supply frequencies to the washing machine speed of service.The closed-loop control meeting produces unstable and has obviously improved cost.This design does not relate to other control except that dehydrating speed, the control of for example washing the current beat yet.Thereby the versatility problem of product still exists.
Three, summary of the invention
Defective at prior art, the object of the present invention is to provide a kind of simple in structure, the economical and practical washing machine that is used for detects the system and method for controlling, and changes corresponding operation time parameters automatically according to supply frequency, makes that washing machine can be general in different supply frequency areas.
For achieving the above object, the technical solution used in the present invention is as follows:
A kind of system that is used for the supply frequency Automatic Detection and Control of washing machine, this system comprises: supply unit 110, electronic-circuit device 120 and drive unit of washing machine 130, drive unit of washing machine 130 comprise washing machine motor 131 and other electrical equipment 132; The output of supply unit 110 links to each other with the input of electronic-circuit device 120, and the output of electronic-circuit device 120 links to each other with the input of drive unit of washing machine 130; It is characterized in that, described electronic-circuit device 120 comprises supply frequency testing circuit 121 and microcomputer 123, the output of described supply frequency testing circuit 121 inserts the input of microcomputer 123, and the output signal of microcomputer 123 sends washing machine motor 131 to.
Described supply frequency testing circuit 121 is a power zero-crossing detection circuit, provides the power supply zero cross signal to microcomputer 123, and described microcomputer utilizes this signal to differentiate supply frequency in program.The output of described supply frequency testing circuit 121 sends the power supply zero cross signal I/O mouth of microcomputer 123 to, also can be INT external interrupt mouth.System also can comprise other testing circuit 122, and level sensor etc. for example, described other electrical equipment 132 can be into water, drain solenoid valve etc.
A kind of method that is used for the supply frequency Automatic Detection and Control of washing machine is characterized in that this method comprises the steps:
(a), detect: provide a supply frequency that exchanges by supply unit, pick up frequency signal by the sampling section in the supply frequency testing circuit,
(b), control: the signal of sampling is transported in the microcomputer after the processing of supply frequency testing circuit, and by the processing that control program is judged, controlled received detection signal, detection signal after treatment converts control instruction to,
(c), carry out: the control instruction that slave microcomputer sends can work washing machine with the rotation of control washing machine motor under different frequency;
In step (a) detects, sampling section in the supply frequency testing circuit adopts the mode of transformer step-down full-wave rectification to pick up frequency signal, provide the power supply zero cross signal to described microcomputer, sampling section in the supply frequency testing circuit adopts the mode sampling frequency signal of resistance or capacitance partial pressure halfwave rectifier, provides the power supply zero cross signal to described microcomputer.In step (b) control, described control program comprises supply frequency trace routine, time parameter control program, the supply frequency trace routine reads power detection signal, and judge the height of supply frequency, the signal that judgement draws is passed to the time parameter control program, thereby call current beat, dewatering time parameter, the speed of service of control washing machine motor.
In step (b) control, sampled signal is delivered to microcomputer, and its internal control program step is as follows:
(1) initialization start program is given the accumulator zero clearing earlier, and the initial value of timer is set then;
(2) when signal reaches, drive timer and interrupt, open the INT external interrupt;
(3) if signal is delivered to the INT mouth of microcomputer in step (2), accumulator adds 1, returns step (2);
(4) if signal is delivered to the I/O mouth of microcomputer in step (2), read I/O mouth state,, forward the I/O mouth state of reading after accumulator adds 1 to if I/O mouth state changes; If I/O mouth state does not change, also forward the I/O mouth state of reading to;
(5) the continuous recording impulse number of accumulator when timer overflows interruption, stops accumulator count, and the initial value of numerical value in the accumulator and setting is judged comparison;
(6) if the accumulator value is called little parameter greater than setting initial value in the step (5), step (2) is returned in the accumulator zero clearing;
(7) if the accumulator value is called big parameter less than setting initial value in the step (5), step (2) is returned in the accumulator zero clearing.
Described supply frequency trace routine writes down described zero cross signal pulse number in the unit interval, and compares with setting value.Wherein, microcomputer is that single-chip microprocessor MCU or existing general microcomputer can.
Use beneficial effect of the present invention to be: microcomputer and control program with the supply frequency testing circuit with the square-wave pulse signal that measures, after the processing of microcomputer to signal judgment, control program, function with automatic detection and control, automatically change corresponding operation time parameters according to supply frequency, make washing machine under the different electrical power frequency, keep running effect preferably, thereby can be common to the area of different electrical power frequency.In addition, the control scheme that the present invention the adopts realization of can in the washing machine electronic program controller of prior art, programme, circuit structure is simple, and controls for open loop, can not produce problem of unstable such as vibration.
Four, description of drawings
Fig. 1 is the supply frequency automatic detection and control system of embodiment of the invention washing machine;
Fig. 1 (a) is the control program flow chart of microcomputer and control program among Fig. 1;
Fig. 2 is the supply frequency testing circuit figure of embodiment of the invention washing machine;
Fig. 3 is that the present invention is the main program flow chart that the supply frequency of the present invention the 1st embodiment detects single-chip microprocessor MCU in the control program;
Fig. 3 (a) is the INT external interrupt service subprogram flow chart of the present invention the 1st embodiment;
Fig. 3 (b) is the timer interrupt service routine flow chart of the present invention the 1st embodiment;
Fig. 4 is the supply frequency discriminating program flow chart of the present invention the 2nd embodiment;
Fig. 4 (a) is the timer interrupt service routine flow chart of the present invention the 2nd embodiment.
Five, the specific embodiment
It is as follows to be elaborated with the automatic detection and control system with 50Hz and two kinds of supply frequencies of 60Hz below, and this detection control system and method can be implemented in the electronic washing machine of impeller-type, stirring-type or drum-type.
As shown in Figure 1, be the supply frequency automatic checkout system of embodiment of the invention washing machine.Comprise supply unit 110, electronic-circuit device 120 and drive unit of washing machine 130; The output of supply unit 110 links to each other with the input of electronic-circuit device 120, and the output of electronic-circuit device 120 links to each other with the input of drive unit of washing machine 130; Electronic-circuit device 120 comprises supply frequency testing circuit 121, other testing circuit 122 and microcomputer 123, described drive unit of washing machine 130 comprises washing machine motor 131 and other electrical equipment 132, the ac signal of described supply frequency testing circuit 121 after with transformation, rectification becomes square-wave pulse signal, the pulse signal that obtains is transported in microcomputer and the control program 123, after the processing of microcomputer to signal judgment, control program, output order is with the rotation of control washing machine motor 131.Supply frequency testing circuit 121 wherein is a power supply zero passage frequency detection circuit.
Shown in Fig. 1 (a), be the microcomputer among Fig. 1 and the control program flow chart of control program.It comprises supply frequency trace routine 210 and time parameter control program 220, and its concrete steps are as follows:
At first, the signal of the supply frequency testing circuit 211 that is provided by supply frequency testing circuit 121 is provided supply frequency trace routine 210; Then, judge the height of supply frequency 212; The result who judges sends time parameter control program 220 to, again by described time parameter control program 220, calls current beat, dewatering time parameter 221, sends the operation 222 of instruction control washing machine motor 131 at last.
As shown in Figure 2, be the supply frequency testing circuit figure of embodiment of the invention washing machine.Specifically this supply frequency testing circuit belongs to power supply zero passage frequency detection circuit, form by transformer TR, rectifier bridge D1-D4, resistance R 1-R4, capacitor C 1, C2, NPN type triode, 5V dc source, 87C1202 type single-chip microprocessor MCU, the voltage transformation that transformer TR provides supply unit 110 is to about the 10V, after the rectification through rectifier bridge D1-D4, ac signal is become a prescription wave pulse signal, deliver to the INT external interrupt mouth or the I/O mouth of single-chip microprocessor MCU, read this power supply zero passage interrupt signal by single-chip microprocessor MCU.The sampling section of supply frequency testing circuit also can adopt resistance or capacitance partial pressure half-wave rectifying circuit except as Fig. 2 transformer step-down full-wave rectifying circuit.
In the signal processing of single-chip microprocessor MCU, because the zero passage interrupt signal is obtained by the ac signal conversion, the number of square-wave pulse signal has reflected the number of times of AC power zero passage, has also promptly reflected the frequency of AC power.Single-chip microprocessor MCU is noted the number of signal pulse in the regular hour, according to the frequency that how much can judge power supply of umber of pulse.
Then, single-chip microprocessor MCU selects the time corresponding parameter to control the operation of laundry motor according to detected supply frequency by the time parameter control program, when washing machine is worked under different frequency, can both obtain clean result preferably.
Just export zero cross signal below and give the INT external interrupt mouth or the I/O mouth of single-chip microprocessor MCU respectively, designed microcomputer and control program are elaborated.
Fig. 3, Fig. 3 (a), Fig. 3 (b) are zero cross signals when delivering to the INT mouth of single-chip microprocessor MCU, the embodiment of microcomputer and control program.As shown in Figure 3, be the main program flow chart of single-chip microprocessor MCU.After program initialization execution in step 300 beginning, execution in step 301 is the accumulator zero clearing, and execution in step 302 is provided with initial value to timer then, and wherein, step 302 is to choose according to the time of the single-chip microprocessor MCU clock frequency and the required record square wave number of programming.If the initial value 302 of timer was got 0.5 second, when supply frequency is 50Hz, can record about 50 pulses, when supply frequency is 60Hz, can record about 60 pulses, the difference of 10 umber of pulses is just arranged between 50Hz and the 60Hz, so just supply frequency can have been distinguished.After the program initialization, execution in step 303 is driven timer and is interrupted, and then execution in step 304 is opened the INT external interrupt.When zero cross signal arrived the INT mouth, program changed the INT interrupt service subroutine over to.Shown in Fig. 3 (a), be INT external interrupt service subprogram flow chart, in this subprogram, execution in step 304INT external interrupt begins, and execution in step 305 accumulators add 1 numeration then, and then execution in step 306 is returned main program.Therefore, accumulator has write down the umber of pulse of INT mouth, overflows interruption up to timer.Program forwards timer to and overflows interrupt service subroutine.Shown in Fig. 3 (b), be timer interrupt service routine flow chart, in this subprogram, step 303 timer interrupts beginning, at first stops accumulator count, numerical value in the accumulator and setting value is compared again.With timer regularly is 0.5 second, and setting value is 55, enters step 307 accumulator value and compares in 55: if accumulator value less than 55, then program is judged to 50Hz with supply frequency, calls 50Hz parameter 308; If accumulator value is greater than 55, then program is judged to 60Hz with supply frequency, and execution in step 309 is called the 60Hz parameter, call different parameters after, execution in step 310 accumulator zero clearings, last execution in step 311 is returned.
Like this, program is called different parameter operations according to the supply frequency discrimination result, has realized that cyclelog is general under different frequencies.This embodiment is the tracking power supply frequency at any time, controls according to supply frequency, and adaptability is better.
Fig. 4, Fig. 4 (a) are zero cross signals when delivering to a certain I/O mouth of single-chip microprocessor MCU, the embodiment of microcomputer and control program.As shown in Figure 4, be single-chip microprocessor MCU supply frequency discriminating program flow chart.When connecting power supply, at first enter the frequency discriminating program, program initialization begins 400, with accumulator zero clearing 401, to timer initial value 402 is set then.Choosing of the initial value of timer is identical with the method for the 1st embodiment, just no longer has been described in detail here.After the program initialization, execution in step 403 starts timer and interrupts timing.Program is constantly read I/O mouth state 404, changes when becoming 1 by 0 when recording I/O mouth state, and execution in step 406 accumulators add 1 counting; When recording the change of I/O mouth state is not when becoming 1 by 0, then to return step and read I/O mouth state 404, continues to read I/O mouth state, overflows interruption up to timer, and program forwards timer to and overflows interrupt service subroutine.More than design is the state that picks up by 0 change 1 about I/O mouth status detection, i.e. the rising edge of pulse can certainly be designed to pick up the state by 1 change 0, i.e. the trailing edge of pulse.Fig. 4 (a) is a timer interrupt service subroutine flow chart, and flow chart Fig. 3 (b) effect of the timer interrupt service subroutine among this subprogram and the embodiment 1 is identical with step, just no longer has been described in detail here.
After determining supply frequency, call relevant parameter, change the operation of laundry main program over to.This embodiment only detects supply frequency when start, control according to this supply frequency, and stability better.
More than be implemented on the monolithic processor controlled washing machine electronic program controller of prior art and realize: when the program composition of program controller, after the process of finishing above-mentioned automatic identification supply frequency, difference according to cycle of 50Hz and 60Hz, according to the principle of keeping approaching running effect, setting is called when different frequency for program corresponding to two groups of time parameters of two kinds of frequencies.Described approaching running effect and time corresponding parameter can be by obtaining in the laundry operation test of same drive unit of washing machine under two kinds of frequencies.So just realized that washing machine all can be general under the supply frequency of 50Hz and 60Hz.

Claims (10)

1. system that is used for the supply frequency Automatic Detection and Control of washing machine, this device comprises: supply unit (110), electronic-circuit device (120) and drive unit of washing machine (130), drive unit of washing machine (130) comprise washing machine motor (131) and other electrical equipment (132); The output of supply unit (110) links to each other with the input of electronic-circuit device (120), and the output of electronic-circuit device (120) links to each other with the input of drive unit of washing machine (130); It is characterized in that, described electronic-circuit device (120) comprises supply frequency testing circuit (121) and microcomputer (123), the output of described supply frequency testing circuit (121) is pressed the input of microcomputer (123), and the output signal of microcomputer (123) sends washing machine motor (131) to.
2. according to the described system that is used for the supply frequency Automatic Detection and Control of washing machine of claim 1, it is characterized in that, described supply frequency testing circuit (121) is a power zero-crossing detection circuit, provide the power supply zero cross signal to microcomputer (123), described microcomputer utilizes this signal to differentiate supply frequency in program.
3. according to the described system that is used for the supply frequency Automatic Detection and Control of washing machine of claim 2, it is characterized in that the output of described supply frequency testing circuit (121) sends the power supply zero cross signal in the I/O mouth of microcomputer (123).
4. according to the described system that is used for the supply frequency Automatic Detection and Control of washing machine of claim 2, it is characterized in that the output of described supply frequency testing circuit (121) sends the power supply zero cross signal in the INT external interrupt mouth of microcomputer (123).
5. a method that is used for the supply frequency Automatic Detection and Control of washing machine is characterized in that this method comprises the steps:
(a), detect: provide a supply frequency that exchanges by supply unit, pick up frequency signal by the sampling section in the supply frequency testing circuit,
(b), control: the signal of sampling is transported in the microcomputer after the processing of supply frequency testing circuit, and by the processing that control program is judged, controlled received detection signal, detection signal after treatment converts control instruction to,
(c), carry out: the control instruction that slave microcomputer sends can work washing machine with the rotation of control washing machine motor under different frequency.
6. according to the described supply frequency automatic detection control method that is used for washing machine of claim 5, it is characterized in that, in step (a) detects, sampling section in the supply frequency testing circuit adopts the mode of transformer step-down full-wave rectification to pick up frequency signal, provides the power supply zero cross signal to described microcomputer.
7. according to the described supply frequency automatic detection control method that is used for washing machine of claim 5, it is characterized in that, in step (a) detects, the sampling section of supply frequency testing circuit adopts resistance or capacitance partial pressure halfwave rectifier mode to pick up frequency signal, provides the power supply zero cross signal to described microcomputer.
8. according to the described supply frequency automatic detection control method that is used for washing machine of claim 5, it is characterized in that, in step (b) control, described control program comprises supply frequency trace routine (210), time parameter control program (220), the supply frequency trace routine reads power detection signal (211), and judge the height of supply frequency (212), the signal that judgement draws is passed to the time parameter control program, thereby call current beat, dewatering time parameter (221), operation (222) speed of control washing machine motor.
9. according to the described supply frequency automatic detection control method that is used for washing machine of claim 5, it is characterized in that in step (b) control, sampled signal is delivered to microcomputer, its internal control program step is as follows:
(1) initialization start program is given the accumulator zero clearing earlier, and the initial value of timer is set then;
(2) when signal reaches, drive timer and interrupt, open the INT external interrupt;
(3) if signal is delivered to the INT mouth of microcomputer in step (2), accumulator adds 1, returns step (2) then;
(4) if signal is delivered to the I/O mouth of microcomputer in step (2), read I/O mouth state,, forward the I/O mouth state of reading after accumulator adds 1 to if I/O mouth state changes; If I/O mouth state does not change, also forward the I/O mouth state of reading to;
(5) the continuous recording impulse number of accumulator when timer overflows interruption, stops accumulator count, and the initial value of numerical value in the accumulator and setting is judged comparison;
(6) if the accumulator value is called big parameter greater than setting initial value in the step (5), step (2) is returned in the accumulator zero clearing;
(7) if the accumulator value is called little parameter less than setting initial value in the step (5), step (2) is returned in the accumulator zero clearing.
10. according to the described method that is used for the supply frequency Automatic Detection and Control of washing machine of claim 9, it is characterized in that described supply frequency trace routine writes down described zero cross signal pulse number in the unit interval, and compare with setting value.
CNB021346356A 2002-09-03 2002-09-03 System for automatic detecting and controlling power supply frequency and method applied to waching machine Expired - Lifetime CN1260422C (en)

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Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101895251A (en) * 2010-07-20 2010-11-24 天津市亚安科技电子有限公司 Pan/tilt motor current-limiting control circuit
CN103852638A (en) * 2014-03-19 2014-06-11 成都引众数字设备有限公司 Detection circuit for detecting power frequency output frequency
CN104166045B (en) * 2013-05-15 2016-12-28 海洋王(东莞)照明科技有限公司 A kind of ac power supply frequency detecting device
CN107807272A (en) * 2017-11-27 2018-03-16 深圳市锐钜科技有限公司 Single-phase alternating current zero cross detection circuit and detection method based on transformer isolation
CN107831357A (en) * 2017-11-27 2018-03-23 深圳市锐钜科技有限公司 Single-phase alternating current zero cross detection circuit and detection method based on light-coupled isolation
CN108957122A (en) * 2017-05-17 2018-12-07 佛山市顺德区美的电热电器制造有限公司 A kind of frequency determination methods and device of voltage
CN113529347A (en) * 2020-04-16 2021-10-22 青岛胶南海尔洗衣机有限公司 Alternating current power supply frequency detection method and device and clothes treatment system
CN117478140A (en) * 2023-12-26 2024-01-30 四川莱福德科技有限公司 High-precision full-voltage alternating current-direct current sampling circuit and method for LED power supply

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101895251A (en) * 2010-07-20 2010-11-24 天津市亚安科技电子有限公司 Pan/tilt motor current-limiting control circuit
CN104166045B (en) * 2013-05-15 2016-12-28 海洋王(东莞)照明科技有限公司 A kind of ac power supply frequency detecting device
CN103852638A (en) * 2014-03-19 2014-06-11 成都引众数字设备有限公司 Detection circuit for detecting power frequency output frequency
CN103852638B (en) * 2014-03-19 2016-03-23 成都引众数字设备有限公司 For detecting the testing circuit of power frequency output frequency
CN108957122A (en) * 2017-05-17 2018-12-07 佛山市顺德区美的电热电器制造有限公司 A kind of frequency determination methods and device of voltage
CN107807272A (en) * 2017-11-27 2018-03-16 深圳市锐钜科技有限公司 Single-phase alternating current zero cross detection circuit and detection method based on transformer isolation
CN107831357A (en) * 2017-11-27 2018-03-23 深圳市锐钜科技有限公司 Single-phase alternating current zero cross detection circuit and detection method based on light-coupled isolation
CN113529347A (en) * 2020-04-16 2021-10-22 青岛胶南海尔洗衣机有限公司 Alternating current power supply frequency detection method and device and clothes treatment system
CN113529347B (en) * 2020-04-16 2023-06-20 青岛胶南海尔洗衣机有限公司 AC power supply frequency detection method, device and clothes treatment system
CN117478140A (en) * 2023-12-26 2024-01-30 四川莱福德科技有限公司 High-precision full-voltage alternating current-direct current sampling circuit and method for LED power supply
CN117478140B (en) * 2023-12-26 2024-03-15 四川莱福德科技有限公司 High-precision full-voltage alternating current-direct current sampling circuit and method for LED power supply

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