CN105242209A - Voltage-stabilizing tested rotation speed automatic adjustment-type motor testing system - Google Patents

Voltage-stabilizing tested rotation speed automatic adjustment-type motor testing system Download PDF

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Publication number
CN105242209A
CN105242209A CN201510817529.7A CN201510817529A CN105242209A CN 105242209 A CN105242209 A CN 105242209A CN 201510817529 A CN201510817529 A CN 201510817529A CN 105242209 A CN105242209 A CN 105242209A
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Prior art keywords
triode
pole
diode
motor
resistance
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CN201510817529.7A
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Chinese (zh)
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陈仁学
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Chengdu Keruixin Technology Co Ltd
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Chengdu Keruixin Technology Co Ltd
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Priority to CN201510817529.7A priority Critical patent/CN105242209A/en
Publication of CN105242209A publication Critical patent/CN105242209A/en
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Abstract

The invention discloses a voltage-stabilizing tested rotation speed automatic adjustment-type motor testing system, which is characterized by being composed of a single chip microcomputer, a rotation speed signal acquisition unit, a variable frequency motor control unit, an output display unit and an operation unit connected with the single chip microcomputer respectively, a tested motor connected with the rotation speed signal acquisition unit, a variable frequency motor connected with the tested motor, and a voltage-stabilizing power supply module connected with the variable frequency motor, and the variable frequency motor is also connected with the variable frequency motor control unit. The rotation speed of the tested motor can be quickly adjusted during the test process so as to test parameters of the tested motor at a different rotation speed, and the motor test efficiency is improved. Stable work voltage is provided for the variable frequency motor and the tested motor, the variable frequency motor and the tested motor can work stably, and a tester can evaluate the performance of the tested motor conveniently.

Description

A kind of type voltage regulation test rotating speed automatic adjustment Motor Measuring System
Technical field
The present invention relates to a kind of Motor Measuring System, specifically refer to a kind of type voltage regulation test rotating speed automatic adjustment Motor Measuring System.
Background technology
Along with national economy and scientific and technical development, the effect that motor plays in all trades and professions is more and more important.Meanwhile, along with the development of every profession and trade, propose more and more higher requirement to motor product, therefore motor product all needs to verify whether its characteristic reaches application requirement by some pilot projects before dispatching from the factory.Motor Measuring Technology has considerable meaning for the performance verification of motor.But traditional Motor Measuring System is easily subject to the impact of system operating voltage fluctuation when testing motor, cause cannot steadily being operated normally by measured motor, this just affects the assessment of tester to tested motor performance.
Summary of the invention
The object of the invention is to overcome traditional Motor Measuring System is easily subject to system operating voltage fluctuation impact when testing motor, cause the defect that cannot steadily be operated normally by measured motor, provide a kind of type voltage regulation to test rotating speed automatic adjustment Motor Measuring System.
Object of the present invention is achieved through the following technical solutions: a kind of type voltage regulation test rotating speed automatic adjustment Motor Measuring System, by single-chip microcomputer, the tach signal collecting unit be connected with single-chip microcomputer respectively, variable-frequency motor control module, output display unit and operating unit, be connected with tach signal collecting unit by measured motor, the variable-frequency motor be connected with by measured motor, and the power module of voltage regulation be connected with variable-frequency motor forms, described variable-frequency motor is also connected with variable-frequency motor control module, described power module of voltage regulation is by transformer T, diode rectifier U, three terminal regulator U1, triode VT4, triode VT5, positive pole is connected with the cathode output end of diode rectifier U, the electric capacity C2 that negative pole is then connected with the cathode output end of diode rectifier U, the electric capacity C3 be in parallel with electric capacity C2, be serially connected in the diode D3 between the IN pin of three terminal regulator U1 and OUT pin, P pole is connected with the GND pin of three terminal regulator U1 after electric capacity C4, the diode D4 that N pole is then connected with the cathode output end of diode rectifier U, one end is connected with the emitter of triode VT4, the resistance R8 that the other end is then connected with the N pole of diode D4, be serially connected in the electric capacity C5 between the collector of triode VT4 and the base stage of triode VT5, one end is connected with the base stage of triode VT5, the potentiometer R9 that the other end is then extremely connected with the N of diode D4, and N pole is connected with the collector of triode VT5, the diode D5 that P pole is then connected with the N pole of diode D4 forms, an input end of described diode rectifier U is connected with the non-same polarity of the secondary inductance coil of transformer T, its another input end is then connected with the Same Name of Ends of the secondary inductance coil of transformer T, the Same Name of Ends of the former limit telefault of described transformer T and non-same polarity form the input end of this power module of voltage regulation jointly, the base stage of described triode VT4 is then connected with the P pole of diode D4, form the output terminal of this power module of voltage regulation while the IN pin of described three terminal regulator U1 is connected with the cathode output end of diode rectifier U, its OUT pin is then connected with the emitter of triode VT5 together with the P pole of diode D5, the output terminal of this power module of voltage regulation is connected with variable-frequency motor.
Further, described tach signal collecting unit by being arranged on by the speed probe in the rotating shaft of measured motor, the Acquisition Circuit be connected with speed probe, and the constant-current source circuit be connected with Acquisition Circuit forms; Described Acquisition Circuit is also connected with single-chip microcomputer.
Described Acquisition Circuit is by triode VT1, amplifier P1, positive pole is ground connection after voltage stabilizing diode D2, the electric capacity C1 of minus earth, P pole is connected with the output terminal of speed probe, N pole is then in turn through diode D1 that resistance R2 is connected with the negative pole of electric capacity C1 after resistance R3, one end is connected with the base stage of triode VT1, the resistance R1 that the other end is then connected with the P pole of diode D1, be serially connected in the resistance R7 between the positive pole of amplifier P1 and output terminal, and forward end is connected with the output terminal of amplifier P1, the polarity-inverting amplifier P2 that backward end then forms the output terminal of this tach signal collecting unit forms, while the base stage of described triode VT1 is connected with the positive pole of electric capacity C1, its emitter is then connected with the positive pole of amplifier P1, ground connection, its collector are then connected with the negative pole of amplifier P1, the output terminal of described tach signal collecting unit is connected with single-chip microcomputer.
Described constant-current source circuit by triode VT2, triode VT3, and the resistance R4 that one end is connected with the base stage of triode VT2, the other end is then connected with the emitter of triode VT2 after resistance R6 through resistance R5 in turn forms; The base stage of described triode VT2 is connected with the collector of triode VT3, its collector is then connected with the negative pole of amplifier P1, its emitter is then connected with the emitter of triode VT3; The base stage of described triode VT3 is then connected with the tie point of resistance R3 with resistance R2; The tie point of described resistance R4 and resistance R5 connects 5V voltage.
Described triode VT1, triode VT2 and triode VT3 all adopt NPN type triode.
Described three terminal regulator U1 is LM317 integrated chip.
The present invention comparatively prior art compares, and has the following advantages and beneficial effect:
(1) the present invention can adjust by the rotating speed of measured motor fast in test process, to test by the parameter of measured motor under different rotating speeds, improves the efficiency of electromechanical testing.
(2) speed probe of the present invention is highly sensitive, can collect the very first time by the real-time rotate speed signal of measured motor, avoid signal to incur loss through delay and bring impact to test result.
(3) the present invention can give variable-frequency motor and be provided stable operating voltage by measured motor, makes it work stably, is convenient to the assessment of tester to tested motor performance.
Accompanying drawing explanation
Fig. 1 is one-piece construction block diagram of the present invention.
Fig. 2 is the circuit structure diagram of tach signal collecting unit of the present invention.
Fig. 3 is the circuit structure diagram of power module of voltage regulation of the present invention.
Embodiment
Below in conjunction with embodiment, the present invention is described in further detail, but embodiments of the present invention are not limited to this.
Embodiment
As shown in Figure 1, type voltage regulation test rotating speed automatic adjustment Motor Measuring System of the present invention, by single-chip microcomputer, the tach signal collecting unit be connected with single-chip microcomputer respectively, variable-frequency motor control module, output display unit and operating unit, be connected with tach signal collecting unit by measured motor, the variable-frequency motor be connected with by measured motor, and the power module of voltage regulation be connected with variable-frequency motor forms.Described variable-frequency motor is also connected with variable-frequency motor control module.
Wherein, power module of voltage regulation is used for providing stable operating voltage to variable-frequency motor and by measured motor, and variable-frequency motor is then for driving tested electric machine rotation.The instruction of variable-frequency motor control module then for sending according to single-chip microcomputer controls variable-frequency motor, controls by the rotating speed of measured motor to reach.Tach signal collecting unit is then for gathering by the real-time rotate speed signal of measured motor.Output display unit is used for showing intuitively by the real-time rotate speed of measured motor, and tester can assess by the performance of measured motor according to by the real-time rotate speed of measured motor, and this output display unit can adopt traditional display to realize.Operating unit is as human-computer exchange window, and tester can by it to single-chip microcomputer input control parameter.Single-chip microcomputer is then as control center of the present invention, it is analyzed for the controling parameters inputted tester, and sending steering order to variable-frequency motor control module, its tach signal that can also collect tach signal collecting unit is analyzed and exports to output display unit simultaneously.
As shown in Figure 2, it is by speed probe for the structure of this tach signal collecting unit, the Acquisition Circuit be connected with speed probe, and the constant-current source circuit be connected with Acquisition Circuit forms.
Described Acquisition Circuit is by triode VT1, and amplifier P1, resistance R1, resistance R2, resistance R3, resistance R7, polarity-inverting amplifier P2, electric capacity C1, diode D1 and voltage stabilizing diode D2 form.Constant-current source circuit is then by triode VT2, and triode VT3, resistance R4, resistance R5 and resistance R6 form.
Wherein, one end of resistance R4 is connected with the base stage of triode VT2, its other end is then connected with the emitter of triode VT2 after resistance R6 through resistance R5 in turn.The base stage of described triode VT2 is connected with the collector of triode VT3, its collector is then connected with the negative pole of amplifier P1, its emitter is then connected with the emitter of triode VT3.The tie point of described resistance R4 and resistance R5 connects 5V voltage, provides operating voltage for giving tach signal collecting unit.
In addition, positive pole ground connection, its minus earth after voltage stabilizing diode D2 of electric capacity C1, the P pole of diode D1 is connected with the output terminal of speed probe, its N pole is then connected with the negative pole of electric capacity C1 after resistance R3 through resistance R2 in turn, and the base stage of described triode VT3 is then connected with the tie point of resistance R3 with resistance R2.One end of resistance R1 is connected with the base stage of triode VT1, its other end is then connected with the P pole of diode D1, between the positive pole that resistance R7 is then serially connected in amplifier P1 and output terminal, the output terminal that the forward end of polarity-inverting amplifier P2 is connected with the output terminal of amplifier P1, its backward end then forms this tach signal collecting unit is connected with single-chip microcomputer.While the base stage of described triode VT1 is connected with the positive pole of electric capacity C1, its emitter is then connected with the positive pole of amplifier P1, ground connection, its collector are then connected with the negative pole of amplifier P1.In order to reach better implementation result, the RS-3102 type piezoelectric sensor for measuring rotational speed that this speed probe preferentially adopts Beijing Tuo Puruisheng observation and control technology company limited to produce realizes.Described triode VT1, triode VT2 and triode VT3 then all preferentially adopt NPN type triode to realize.
As shown in Figure 3, it is by transformer T, diode rectifier U, three terminal regulator U1, triode VT4 for the structure of described power module of voltage regulation, triode VT5, electric capacity C2, electric capacity C3, electric capacity C4, electric capacity C5, diode D3, diode D4, diode D5, resistance R8 and potentiometer R9 form.
During connection, the positive pole of electric capacity C2 is connected with the cathode output end of diode rectifier U, its negative pole is then connected with the cathode output end of diode rectifier U; This diode rectifier and electric capacity C2 form current rectifying and wave filtering circuit.Electric capacity C3 is then in parallel with electric capacity C2, diode D3 is serially connected between the IN pin of three terminal regulator U1 and OUT pin, the P pole of diode D4 is connected with the GND pin of three terminal regulator U1 after electric capacity C4, its N pole is then connected with the cathode output end of diode rectifier U, one end of resistance R8 is connected with the emitter of triode VT4, its other end is then connected with the N pole of diode D4, electric capacity C5 is serially connected between the collector of triode VT4 and the base stage of triode VT5, one end of potentiometer R9 is connected with the base stage of triode VT5, its other end is then extremely connected with the N of diode D4, the N pole of diode D5 is connected with the collector of triode VT5, its P pole is then connected with the N pole of diode D4.
An input end of described diode rectifier U is connected with the non-same polarity of the secondary inductance coil of transformer T, its another input end is then connected with the Same Name of Ends of the secondary inductance coil of transformer T.The Same Name of Ends of the former limit telefault of described transformer T and non-same polarity form the input end of this power module of voltage regulation jointly, and this input termination 220V civil power, 220V civil power exports 15V voltage after transformer T transformation.The base stage of described triode VT4 is then connected with the P pole of diode D4.Form the output terminal of this power module of voltage regulation while the IN pin of described three terminal regulator U1 is connected with the cathode output end of diode rectifier U, its OUT pin is then connected with the emitter of triode VT5 together with the P pole of diode D5, the output terminal of this power module of voltage regulation is connected with variable-frequency motor.In order to reach better implementation result, this three terminal regulator U1 is preferably LM317 integrated chip to realize.
As mentioned above, just well the present invention can be implemented.

Claims (6)

1. a type voltage regulation test rotating speed automatic adjustment Motor Measuring System, it is characterized in that: by single-chip microcomputer, the tach signal collecting unit be connected with single-chip microcomputer respectively, variable-frequency motor control module, output display unit and operating unit, be connected with tach signal collecting unit by measured motor, the variable-frequency motor be connected with by measured motor, and the power module of voltage regulation be connected with variable-frequency motor forms, described variable-frequency motor is also connected with variable-frequency motor control module, described power module of voltage regulation is by transformer T, diode rectifier U, three terminal regulator U1, triode VT4, triode VT5, positive pole is connected with the cathode output end of diode rectifier U, the electric capacity C2 that negative pole is then connected with the cathode output end of diode rectifier U, the electric capacity C3 be in parallel with electric capacity C2, be serially connected in the diode D3 between the IN pin of three terminal regulator U1 and OUT pin, P pole is connected with the GND pin of three terminal regulator U1 after electric capacity C4, the diode D4 that N pole is then connected with the cathode output end of diode rectifier U, one end is connected with the emitter of triode VT4, the resistance R8 that the other end is then connected with the N pole of diode D4, be serially connected in the electric capacity C5 between the collector of triode VT4 and the base stage of triode VT5, one end is connected with the base stage of triode VT5, the potentiometer R9 that the other end is then extremely connected with the N of diode D4, and N pole is connected with the collector of triode VT5, the diode D5 that P pole is then connected with the N pole of diode D4 forms, an input end of described diode rectifier U is connected with the non-same polarity of the secondary inductance coil of transformer T, its another input end is then connected with the Same Name of Ends of the secondary inductance coil of transformer T, the Same Name of Ends of the former limit telefault of described transformer T and non-same polarity form the input end of this power module of voltage regulation jointly, the base stage of described triode VT4 is then connected with the P pole of diode D4, form the output terminal of this power module of voltage regulation while the IN pin of described three terminal regulator U1 is connected with the cathode output end of diode rectifier U, its OUT pin is then connected with the emitter of triode VT5 together with the P pole of diode D5, the output terminal of this power module of voltage regulation is connected with variable-frequency motor.
2. a kind of type voltage regulation test rotating speed automatic adjustment Motor Measuring System according to claim 1, it is characterized in that: described tach signal collecting unit is by being arranged on by the speed probe in the rotating shaft of measured motor, the Acquisition Circuit be connected with speed probe, and the constant-current source circuit be connected with Acquisition Circuit forms; Described Acquisition Circuit is also connected with single-chip microcomputer.
3. a kind of type voltage regulation test rotating speed automatic adjustment Motor Measuring System according to claim 2, it is characterized in that: described Acquisition Circuit is by triode VT1, amplifier P1, positive pole is ground connection after voltage stabilizing diode D2, the electric capacity C1 of minus earth, P pole is connected with the output terminal of speed probe, N pole is then in turn through diode D1 that resistance R2 is connected with the negative pole of electric capacity C1 after resistance R3, one end is connected with the base stage of triode VT1, the resistance R1 that the other end is then connected with the P pole of diode D1, be serially connected in the resistance R7 between the positive pole of amplifier P1 and output terminal, and forward end is connected with the output terminal of amplifier P1, the polarity-inverting amplifier P2 that backward end then forms the output terminal of this tach signal collecting unit forms, while the base stage of described triode VT1 is connected with the positive pole of electric capacity C1, its emitter is then connected with the positive pole of amplifier P1, ground connection, its collector are then connected with the negative pole of amplifier P1, the output terminal of described tach signal collecting unit is connected with single-chip microcomputer.
4. a kind of type voltage regulation test rotating speed automatic adjustment Motor Measuring System according to claim 3, it is characterized in that: described constant-current source circuit is by triode VT2, triode VT3, and the resistance R4 that one end is connected with the base stage of triode VT2, the other end is then connected with the emitter of triode VT2 after resistance R6 through resistance R5 in turn forms; The base stage of described triode VT2 is connected with the collector of triode VT3, its collector is then connected with the negative pole of amplifier P1, its emitter is then connected with the emitter of triode VT3; The base stage of described triode VT3 is then connected with the tie point of resistance R3 with resistance R2; The tie point of described resistance R4 and resistance R5 connects 5V voltage.
5. a kind of type voltage regulation test rotating speed automatic adjustment Motor Measuring System according to claim 4, is characterized in that: described triode VT1, triode VT2 and triode VT3 all adopt NPN type triode.
6. a kind of type voltage regulation test rotating speed automatic adjustment Motor Measuring System according to claim 4, is characterized in that: described three terminal regulator U1 is LM317 integrated chip.
CN201510817529.7A 2015-11-21 2015-11-21 Voltage-stabilizing tested rotation speed automatic adjustment-type motor testing system Withdrawn CN105242209A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2017152366A1 (en) * 2016-03-08 2017-09-14 马翼 Speed monitoring system with photoelectric counting for wind power generator

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CN104034536A (en) * 2014-04-10 2014-09-10 张远明 Electric auxiliary drive bicycle assist rate automatic test table
CN104808146A (en) * 2015-05-06 2015-07-29 成都诚邦动力测试仪器有限公司 High-accuracy motor testing system
CN104953866A (en) * 2014-11-27 2015-09-30 成都雷克尔科技有限公司 Combined protective multiplexed output voltage-stabilized power source based on logic protection amplifying circuit

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103550911A (en) * 2013-10-29 2014-02-05 北京踏行天际科技发展有限公司 Indoor network bicycle system for realizing multi-user networking competition and control method thereof
CN203688684U (en) * 2013-11-30 2014-07-02 成都天志大行信息科技有限公司 RFID card stability testing device
CN104034536A (en) * 2014-04-10 2014-09-10 张远明 Electric auxiliary drive bicycle assist rate automatic test table
CN104953866A (en) * 2014-11-27 2015-09-30 成都雷克尔科技有限公司 Combined protective multiplexed output voltage-stabilized power source based on logic protection amplifying circuit
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* Cited by examiner, † Cited by third party
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Application publication date: 20160113