IP Library Granted Patent US 10,024,896
Granted Patent B2
US 10,024,896 · App. 14/112,828 · Granted Jul 17, 2018

Inverter-driven rotary electric machine, phase-to-phase insulation partial discharge inspection method and phase-to-phase insulation partial discharge inspection apparatus

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Quick Facts
Patent No.
US 10,024,896
App. No.
14/112,828
Granted
Jul 17, 2018
Kind
B2
Abstract

A phase-to-phase insulation partial discharge inspection apparatus includes: an impulse power supply ( 1 ) configured to apply an impulse voltage having a voltage rise time period tr which satisfies an expression “tr>(τ coil ·V max )/(PDIV)” to a rotary electric machine ( 2 ); a measurement section ( 12 ) configured to measure partial discharge which occurs when the impulse voltage is applied to the rotary electric machine ( 2 ); and a decision section ( 15 ) configured to determine that, when partial discharge is not measured by the measurement section ( 12 ), a phase-to-phase insulation performance is acceptable. In the expression, τ coil is a surge propagation time period of one coil of a rotary electric machine winding, PDIV a partial discharge inception voltage between winding turns, and V max a peak of a partial discharge testing voltage for the phase-to-phase insulation.

Claims (30)

1. A phase-to-phase insulation partial discharge inspection method for an inverter-driven rotary electric machine, comprising:

a step of applying an impulse voltage having a voltage rise time period tr which satisfies an expression (A1) given below to the rotary electric machine;

a step of confirming whether or not partial discharge occurs; and

a step of determining that, when occurrence of partial discharge is confirmed, the partial discharge did not occur in winding insulation, and occurred in insulation of the rotary electric machine other than winding insulation,

tr>( t coil ·V max )/(PDIV)  (A1)

where t coil is a surge propagation time period of one coil of a rotary electric machine winding, PDIV a partial discharge inception voltage between winding turns, and V max a peak of a partial discharge testing voltage for the phase-to-phase insulation.

2. The phase-to-phase insulation partial discharge inspection method for an inverter-driven rotary electric machine according to claim 1 , wherein

the impulse voltage is an oscillation voltage having an oscillation frequency f, and

the voltage rise time period tr is set so as to satisfy the following expression (A2):

tr≤1/(4 f )  (A2).

3. The phase-to-phase insulation partial discharge inspection method for an inverter-driven rotary electric machine according to claim 2 , wherein

the impulse voltage is a damped oscillation voltage having the oscillation frequency f and a time constant K, and

the oscillation frequency f is set so as to satisfy the following expression (A3):

−1/(2 K· 1 n (( V test /V max )−1)≤ f≤ 1/(2√( L·C ))  (A3),

where V test is a peak-to-peak voltage of the damped oscillation voltage given by V test =V max (1+exp(−(1/2f)/k)), L is an overall inductance of the winding turns, and C is an overall capacitance between the winding turns and a core or ground of the rotary electric machine.

4. A phase-to-phase insulation partial discharge inspection apparatus for an inverter-driven rotary electric machine, comprising:

an impulse power supply configured to apply an impulse voltage having a voltage rise time period tr which satisfies an expression (A1) given below to the rotary electric machine;

a measurement section configured to measure partial discharge which occurs when the impulse voltage is applied to the rotary electric machine; and

a decision section configured to determine that, when occurrence of partial discharge is confirmed, the partial discharge did not occur in winding insulation, and occurred in insulation of the rotary electric machine other than winding insulation,

tr>( t coil ·V max )/(PDIV)  (A1)

where t coil is a surge propagation time period of one coil of a rotary electric machine winding, PDIV a partial discharge inception voltage between winding turns, and V max a peak of a partial discharge testing voltage for the phase-to-phase insulation.

5. The phase-to-phase insulation partial discharge inspection apparatus for an inverter-driven rotary electric machine according to claim 4 , wherein

the impulse voltage is an oscillation voltage having an oscillation frequency f, and

the voltage rise time period tr is set so as to satisfy the following expression (A2):

tr≤1/(4 f )  (A2).

6. The phase-to-phase insulation partial discharge inspection apparatus for an inverter-driven rotary electric machine according to claim 5 , wherein

the impulse voltage is a damped oscillation voltage having the oscillation frequency f and a time constant K, and

the oscillation frequency f is set so as to satisfy the following expression (A3):

−1/(2 K· 1 n (( V test /V max )−1)≤ f≤ 1/(2√( L·C ))  (A3),

where V test is a peak-to-peak voltage of the damped oscillation voltage given by V test =V max (1+exp(−(1/2f)/k)), L is an overall inductance of the winding turns, and C is an overall capacitance between the winding turns and a core or ground of the rotary electric machine.

Assignments (2)
CHANGE OF NAME Recorded Mar 25, 2021
From: HITACHI AUTOMOTIVE SYSTEMS, LTD.
To: HITACHI ASTEMO, LTD.
Reel/Frame 056299/0447 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2013
From: OBATA, KOJI
To: HITACHI AUTOMOTIVE SYSTEMS, LTD.
Reel/Frame 031733/0481 →