EP0945974A2

Control apparatus of brushless motor and machine using brushless motor

Abstract

A phase signal generation circuit (9) is constituted by using a comparison circuit (10), a delay circuit (11), a gate signal preparation circuit (13), and a selection holding circuit (12). A phase signal (9a) generated in the phase signal generation circuit (9) is pattern recognized in a control circuit (6) and a position of a rotor is detected and further PWM control whole area, PAM control, and a change-over PWM/PAM is carried out. A rotor position detection accuracy can be heightened and the wide control range can be obtained.

EP0945974A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 11 March 2019, 7.5 years ago.

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18 claims: 15 independent, 3 dependent

  1. 1
    In a control apparatus for use in a brushless motor (5) comprising:a voltage detection means (8) for generating a detection voltage (8a) in response to a terminal voltage of plural phases of a stator winding of the brushless motor (5), a standard voltage generation means for generating a standard voltage, a comparison means (10) for outputting a comparison result information signal (10a, b) by comparing said detection voltage (8a) and said standard voltage, a control means (6) for detecting a rotation position of a rotor of the brushless motor (5 according to said comparison result information signal (10a, b) and for generating an electric supply signal to said stator winding in response to said rotation position, and an output means for electric supplying to said stator winding according to said electric supply signal, the control apparatus for use in the brushless motor (5), wherein said control means (6) extracts an "on" period or an "off " period of PWM (pulse width modulation) signal according to said comparison result information signal (10a, b).
  2. 2
    In a control apparatus for use in a brushless motor comprising:a voltage detection means (8) for generating a detection voltage (8a) in response to a terminal voltage of plural phases of a stator winding of the brushless motor (5), a standard voltage generation means for generating a standard voltage, a comparison means (10) for outputting a comparison result information signal (10a, b) by comparing said detection voltage (8a) and said standard voltage, a selection holding means (12) for selecting whether said comparison result information signal (10a, b) from said comparison means (10) output as a phase signal (9a) or whether by holding timely a previous comparison result information signal said comparison result information signal from said comparison means (10) output as a phase signal (9a), a control means (6) for detecting a rotation position of a rotor of the brushless motor (5) according to said comparison result information signal (10a, b) and for generating an electric supply signal to said stator winding in response to said rotation position, and an output means for electric supplying to said stator winding according to said electric supply signal, the control apparatus for use in the brushless motor (5), wherein said selection holding means (12) output, when PWM (pulse width modulation) signal is an "on" condition, said comparison information signal (10a, b) from said comparison means (10) output as said phase signal (9a) as it is and, when PWM (pulse width modulation) signal is an "off" condition, by holding an immediately before an "off" condition comparison result information signal, said selection holding means (12) output as a phase signal (9a).
  3. 3
    In a control apparatus for use in a brushless motor (5) comprising:a rectifying circuit (2) for converting an alternating current (AC) power source voltage to a direct current (DC) voltage, an inverter circuit (4) for converting said direct current (DC) voltage to an alternating current (AC) voltage and for supplying said alternating current (AC) voltage to the brushless motor (5), and a control circuit (6) for controlling said inverter circuit (4), wherein the control apparatus for use in the brushless motor (5) comprising: a voltage detection means (8) for generating a detection voltage (8a) in response to a terminal voltage of plural phases of a stator winding of the brushless motor (5) a standard voltage generation means for generating a standard voltage, a comparison means (10) for outputting a comparison result information signal by comparing said detection voltage (8a) and said standard voltage, a selection holding means (12) for selecting whether said comparison result information signal (10a, b) from said comparison means (10) output as a phase signal (9a) or whether by holding timely a previous comparison result information signal said comparison result information signal (10a, b) from said comparison means (10) output as a phase signal (9a), a control means (6) for detecting a rotation position of a rotor of the brushless motor (5) according to said comparison result information signal (10a, b) and for generating an electric supply signal to said stator winding in response to said rotation position, and an output means for electric supplying to said stator winding according to said electric supply signal, the control apparatus for use in the brushless motor (5), and wherein said selection holding means (12) output, when PWM (pulse width modulation) signal is an "on" condition, said comparison information signal (10a, b) from said comparison means (10) output as said phase signal (9a) as it is and, when PWM (pulse width modulation) signal is an "off" condition, by holding an immediately before an "off" condition comparison result information signal (10a, b), said selection holding means (12) outputs as a phase signal (9a).
  4. 4
    In a control apparatus for use in a brushless motor (5) comprising:a converter circuit having a rectifying circuit for converting an alternating current (AC) power source voltage to a direct current (DC) voltage and a chopper circuit for controlling a size of said direct current (DC) voltage, an inverter circuit (4) for converting said direct current (DC) voltage which is received from said inverter circuit to an alternating current (AC) voltage and for supplying said alternating current (AC) voltage to the brushless motor (5), a converter control circuit for controlling a switching operation of said inverter circuit (4), an inverter control circuit for driving the brushless motor (5) by controlling a switching operation of said inverter circuit (4), and a control circuit (6) for controlling said converter control circuit and said inverter control circuit (4), wherein the control apparatus for use in the brushless motor (5) comprising: a voltage detection means (8) for generating a detection voltage (8a) in response to a terminal voltage of plural phases of a stator winding of the brushless motor (5), a standard voltage generation means for generating a standard voltage, a comparison means (10) for outputting a comparison result information signal (10a, b) by comparing said detection voltage (8a) and said standard voltage, a selection holding means (12) for selecting whether said comparison result information signal (10a, b) from said comparison means (10) output as a phase signal (9a) or whether by holding timely a previous comparison result information signal (10a, b) said comparison result information signal (10a, b) from said comparison means (10) output as a phase signal (9a), a control means (6) for detecting a rotation position of a rotor of the brushless motor (5) according to said comparison result information signal (10a, b) and for generating an electric supply signal to said stator winding in response to said rotation position, and an output means for electric supplying to said stator winding according to said electric supply signal, the control apparatus for use in the brushless motor (5), and wherein said selection holding means (12) output, when PWM (pulse width modulation) signal is an "on" condition, said comparison information signal (10a, b) from said comparison means output as said phase signal (9a) as it is and, when PWM (pulse width modulation) signal is an "off" condition, by holding an immediately before an "off" condition comparison result information signal, said selection holding means output as a phase signal.
  5. 5
    In a control apparatus for use in a brushless motor (5) comprising:a voltage detection means for generating a detection voltage (8a) in response to a terminal voltage of plural phases of a stator winding of the brushless motor (5), a standard voltage generation means for generating a standard voltage, a comparison means (10) for outputting a comparison result information signal by comparing said detection voltage (8a) and said standard voltage, a control means (6) for detecting a rotation position of a rotor of the brushless motor (5) according to said comparison result information signal (10a, b) which is outputted from said comparison means (10) and outputting an electric supply signal, and an output means for electric supplying to said stator winding according to said electric supply signal, the control apparatus for use in the brushless motor (5), wherein said control means (6) detects a position of said rotor according to a pattern of plural phase comparison result information signal (10a, b).
  6. 6
    In a control apparatus for use in a brushless motor (5) comprising:a voltage detection means for generating a detection voltage (8a) in response to a terminal voltage of plural phases of a stator winding of the brushless motor (5), a standard voltage generation means for generating a standard voltage, a comparison means (10) for outputting a comparison result information signal (10a, b) by comparing said detection voltage (8a) and said standard voltage, a control means (6) for detecting a rotation position of a rotor of the brushless motor (5) according to said comparison result information signal (10a, b) which is outputted from said comparison means (10) and outputting an electric supply signal, and an output means for electric supplying to said stator winding according to said electric supply signal, the control apparatus for use in the brushless motor (5), wherein said control means (6) determines an electric supply pattern to said stator winding according to a pattern of plural phase comparison result information signal (10a, b).
  7. 7
    In a control apparatus for use in a brushless motor (5) comprising:a voltage detection means for generating a detection voltage (8a) in response to a terminal voltage of plural phases of a stator winding of the brushless motor (5), a standard voltage generation means for generating a standard voltage, a comparison means (10) for outputting a comparison result information signal (10a, b) by comparing said detection voltage (8a) and said standard voltage, a control means (6) for detecting a rotation position of a rotor of the brushless motor (5) according to said comparison result information signal (10a, b) and for generating an electric supply signal to said stator winding in response to said rotation position, and an output means for electric supplying to said stator winding according to said electric supply signal, the control apparatus for use in the brushless motor (5), wherein said control means (6) detects a period in which a return current flows after an electric supply change-over according to a pattern of said comparison result information signal (10a, b).
  8. 8
    In a control apparatus for use in a brushless motor (5) comprising:a voltage detection means (8) for generating a detection voltage (8a) in response to a terminal voltage of plural phases of a stator winding of the brushless motor (5), a standard voltage generation means for generating a standard voltage, a comparison means (10) for outputting a comparison result information signal (10a, b) by comparing said detection voltage (8a) and said standard voltage, a control means (6) for detecting a rotation position of a rotor of the brushless motor (5) according to a pattern of a phase signal (9a) by obtaining said phase signal (9a) according to said comparison result information signal (10a, b) which is outputted from said comparison means (10) and for outputting an electric supply signal, and an output means for electric supplying to said stator winding according to said electric supply signal, the control apparatus for use in the brushless motor (5), wherein after a return current after an electric supply changeover vanishes, a processing for renewing a phase signal pattern which is collated to carry out a position detection.
  9. 9
    In a control apparatus for use in a brushless motor comprising:a voltage detection means (8) for generating a detection voltage (8a) in response to a terminal voltage of plural phases of a stator winding of the brushless motor (5), a standard voltage generation means for generating a standard voltage, a comparison means (10) for outputting a comparison result information signal (10a, b) by comparing said detection voltage (8a) and said standard voltage, a control means for detecting a rotation position of a rotor of the brushless motor (5) according to said comparison result information signal (10a, b) and for generating an electric supply signal to said stator winding in response to said rotation position, and an output means for electric supplying to said stator winding according to said electric supply signal, the control apparatus for use in the brushless motor (5), wherein said control means (6) detects a rotor position according to a pattern of said comparison result information signal (10a, b) and changes over an electric supply phase according to an electric supply information which is stored in a memory.
  10. 10
    In a control apparatus for use in a brushless motor (5) comprising:a voltage detection means (8) for generating a detection voltage (8a) in response to a terminal voltage of plural phases of a stator winding of the brushless motor (5), a standard voltage generation means for generating a standard voltage, a comparison means (10) for outputting a comparison result information signal (10a, b) by comparing said detection voltage (8a) and said standard voltage, a control means (6) for detecting a rotation position of a rotor of the brushless motor (5) according to said comparison result information signal (10a, b) and for generating an electric supply signal to said stator winding in response to said rotation position, and an output means for electric supplying to said stator winding according to said electric supply signal, the control apparatus for use in the brushless motor (5), wherein said control means (6) detects a rotor position according to a pattern of said comparison result information signal (10a, b) and changes over an electric supply phase according to a phase control command from an outside portion.
  11. 12
    In a control apparatus for use in a brushless motor (5) comprising:a voltage detection means (8) for generating a detection voltage (8a) in response to a terminal voltage of plural phases of a stator winding of the brushless motor, a standard voltage generation means for generating a standard voltage, a comparison means (10) for outputting a comparison result information signal (10a, b) by comparing said detection voltage (8a) and said standard voltage, a control means for detecting a rotation position of a rotor of the brushless motor (5) according to said comparison result information signal (10a, b) and for generating an electric supply signal to said stator winding in response to said rotation position, and an output means for electric supplying to said stator winding according to said electric supply signal, the control apparatus for use in the brushless motor, wherein said control means (6) carries out a phase control in an operation efficiency importance in PWM (pulse width modulation) control area and carries out a control for proceeding an electric phase in a high rotation importance control area.
  12. 15
    An air conditioner, wherein the air conditioner is constituted by using a compressor and/or a blower in which the brushless motor (5) operated and controlled according to the control apparatus for use in the brushless motor (5) defined in any one of claims 1 to 14 constitutes a power force source.
  13. 16
    A refrigerator, wherein the refrigerator is constituted by using a compressor and/or a blower in which the brushless motor (5) operated and controlled according to the control apparatus for use in the brushless motor (5) defined in any one of claims 1 to 14 constitutes a power force source.
  14. 17
    A washing machine, wherein the washing machine is constituted by using a compressor and/or a blower in which the brushless motor (5) operated and controlled according to the control apparatus for use in the brushless motor (5) defined in any one of claims 1-14 forms a power force source.
  15. 18
    In a brushless motor system having a brushless motor (5) and a control apparatus for controlling the brushless motor, wherein said control apparatus detects a rotor position of said brushless motor (5) in response to the voltage of a stator winding of said brushless motor (5).