IP Library Granted Patent US 7,342,378
Granted Patent B2
US 7,342,378 · App. 11/505,320 · Granted Mar 11, 2008

System and method for driving synchronous motor

Assignee: Hitachi, Ltd.
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,342,378
App. No.
11/505,320
Granted
Mar 11, 2008
Kind
B2
Abstract

A driving apparatus of a synchronous motor fixes all the switching devices of an inverter at OFF in accordance with a value of an all-OFF control pulse signal outputted by a pulse generator. A motor current keeps flowing through free wheel diodes for a predetermined period even after all the switching devices shift to the OFF state. Therefore, pulse generator changes an induced voltage detection signal to an H (high) level after the passage of the time in which a motor current drops down to zero. A terminal voltage of the motor is taken in to acquire an induced voltage and a rotor position is estimated.

Claims (29)

1. A motor driving apparatus including an inverter for driving a synchronous motor as a load by inputting a DC and converting it to a three-phase AC by power semiconductor switching devices, a driving circuit for driving said power semiconductor switching devices of said inverter and a motor controller for outputting an inverter driving signal to said driving circuit, said motor driving apparatus comprising:

a first pulse generator for generating a signal that brings said power semiconductor switching devices of said inverter to an OFF level;

a second pulse generator for inputting the signal of said first pulse generator and generating a signal after the passage of a predetermined wait time;

an induced voltage detector for inputting the signal of said second pulse generator and detecting a terminal voltage of said synchronous motor as said load;

a phase calculator for inputting an output of said induced voltage detector and calculating a phase of said induced voltage;

a rotating direction estimator for outputting a rotating direction estimation value of said motor from the output of said phase calculator; and

a rotor position calculator for inputting the phase of said induced voltage and said rotating direction estimation value, and outputting the rotor position estimation value to said motor controller.

2. A motor driving apparatus as defined in claim 1 , wherein said induced voltage detector detects the terminal voltage of said synchronous motor through a terminal voltage amplifier.

3. A motor driving apparatus as defined in claim 2 , wherein said terminal voltage amplifier detects a phase voltage between a neutral point terminal of a stator winding of said synchronous motor as said load and an AC terminal.

4. A motor driving apparatus as defined in claim 2 , wherein said terminal voltage amplifier detects a line voltage between AC terminals of said synchronous motor as said load.

5. A motor driving apparatus including an inverter for driving a synchronous motor as a load by inputting a DC and converting it to a three-phase AC by power semiconductor switching devices, a driving circuit for driving said power semiconductor switching devices of said inverter and a motor controller for outputting an inverter driving signal to said driving circuit, said motor driving apparatus comprising:

a current detection resistor interposed between said inverter and a DC power source;

a current detector for detecting a current flowing through said current detection resistor;

a first pulse generator for generating a signal that brings said power semiconductor switching devices of said inverter to an OFF level;

a second pulse generator for inputting the signal of said first pulse generator and an output of said current detector, and generating a signal after the passage of a predetermined wait time;

an induced voltage detector for inputting the signal of said second pulse generator and detecting a terminal voltage of said synchronous motor as said load;

a phase calculator for inputting an output of said induced voltage detector and calculating a phase of said induced voltage;

a rotating direction estimator for outputting a rotating direction estimation value of said motor from the output of said phase calculator; and

a rotor position calculator for inputting the phase of said induced voltage and said rotating direction estimation value and outputting the rotor position estimation value to said motor controller.

6. A motor driving apparatus as defined in claim 5 , wherein said induced voltage detector detects the terminal voltage of said synchronous motor through a terminal voltage amplifier.

7. A motor driving apparatus as defined in claim 5 , wherein said terminal voltage amplifier detects a phase voltage between a neutral point terminal of a stator winding of said synchronous motor as said load and an AC terminal.

8. A motor driving apparatus as defined in claim 5 , wherein said terminal voltage amplifier detects a line voltage between AC terminals of said synchronous motor as said load.

9. A motor driving apparatus including an inverter for driving a synchronous motor as a load by inputting a DC and converting it to a three-phase AC by power semiconductor switching devices, a driving circuit for driving said power semiconductor switching devices of said inverter and a motor controller for outputting an inverter driving signal to said driving circuit, said motor driving apparatus comprising:

a first pulse generator for generating a signal that brings said power semiconductor switching devices of said inverter to an OFF level;

a second pulse generator for inputting the signal of said first pulse generator and generating a signal after the passage of a predetermined wait time; and

an induced voltage detector for inputting the signal of said second pulse generator and detecting a terminal voltage of said synchronous motor as said load;

wherein a rotor position estimation value determined from a phase of the induced voltage determined from the output of said induced voltage detector and a rotating direction estimation value determined from said induced voltage and a back electromotive force of said synchronous motor as said load determined from the induced voltage to be inputted to said induced voltage detector are inputted to said motor controller.

10. A motor driving apparatus as defined in claim 9 , wherein said induced voltage detector detects the terminal voltage of said synchronous motor through a terminal voltage amplifier, and said induced voltage detector detects a terminal voltage of said synchronous motor through said terminal voltage amplifier.

11. A motor driving apparatus as defined in claim 9 , wherein said induced voltage detector detects a terminal voltage of said synchronous motor through said terminal voltage amplifier, and said terminal voltage amplifier detects a line voltage between AC terminals of said synchronous motor as said load.

Assignments (3)
CHANGE OF NAME Recorded Apr 30, 2025
From: HITACHI POWER SEMICONDUCTOR DEVICE LTD.
To: MINEBEA POWER SEMICONDUCTOR DEVICE INC.
Reel/Frame 071142/0232 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2014
From: HITACHI, LTD.
To: HITACHI POWER SEMICONDUCTOR DEVICE, LTD.
Reel/Frame 034153/0954 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2006
From: SAKAMOTO, KIYOSHI; ENDO, TSUNEHIRO; SHIRAHAMA, HIDEFUMI; AJIME, YOSHIAKI
To: HITACHI, LTD.
Reel/Frame 018206/0008 →
Priority Claims (1)
JP 2005-344856 · Nov 30, 2005 · national
Continuity (1)
Related Publication 20070120519A1 · May 31, 2007