IP Library Granted Patent US 12,095,384
Granted Patent B2
US 12,095,384 · App. 17/911,810 · Granted Sep 17, 2024

Direct-current power supply apparatus and method of controlling the same

Inventors: Toshiki Betsuin (Tokyo, JP); Kazunori Sakanobe (Tokyo, JP); Shingo Taninaka (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
H02M7/217H02M1/083
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Quick Facts
Patent No.
US 12,095,384
App. No.
17/911,810
Granted
Sep 17, 2024
Kind
B2
Abstract

A direct-current power supply apparatus includes a rectifier circuit that rectifies a power-supply voltage output from an alternating-current power supply, a smoothing capacitor that smooths an output voltage of the rectifier circuit and outputs a direct-current voltage, a switch connected between an output side of the rectifier circuit and an input side of the smoothing capacitor, a zero crossing detector that detects a zero crossing point of the power-supply voltage, and a controller. The controller includes an adjustment circuitry that sets a switching period such that timing of an on switching operation of the switch falls between a zero crossing period that is a period for the zero crossing point detected by the zero crossing detector, and a zero crossing average period, and a switch control circuitry that outputs an on signal to the switch in accordance with the switching period set by the adjustment circuitry.

Claims (36)

1. A direct-current power supply apparatus comprising:

a rectifier circuit configured to rectify a power-supply voltage output from an alternating-current power supply;

a smoothing capacitor configured to smooth an output voltage of the rectifier circuit and output a direct-current voltage;

a switch connected between an output side of the rectifier circuit and an input side of the smoothing capacitor;

a zero crossing detector configured to detect a zero crossing point of the power-supply voltage; and

a controller configured to generate, on the basis of a zero crossing period that is a period for the zero crossing point detected by the zero crossing detector, an on signal that is a control signal that causes the switch to perform an on switching operation,

the controller being configured to

set a switching period that is a period of the on signal such that timing of the on switching operation of the switch falls between the zero crossing period and a zero crossing average period that is an average value of a plurality of the zero crossing periods detected in a predetermined fixed time period, and

output the on signal to the switch in accordance with the set switching period.

2. The direct-current power supply apparatus of claim 1 , further comprising

a voltage detector configured to detect the direct-current voltage output from the smoothing capacitor,

wherein the controller is configured to

calculate an on signal width that is a time period during which the on signal is output such that the direct-current voltage detected by the voltage detector coincides with a predetermined target direct-current voltage, and,

when the zero crossing period is larger than the zero crossing average period, set the on signal width at a value larger than a last on signal width that is an on signal width of the on signal last output, and, when the zero crossing period is smaller than the zero crossing average period, set the on signal width at a value smaller than the last on signal width.

3. The direct-current power supply apparatus of claim 1 , further comprising

a voltage detector configured to detect the direct-current voltage output from the smoothing capacitor,

wherein the controller is configured to

calculate an on signal width that is a time period during which the on signal is output such that the direct-current voltage detected by the voltage detector coincides with a predetermined target direct-current voltage,

when the direct-current voltage detected by the voltage detector is larger than a predetermined first threshold value, repeat a correction operation of subtracting a predetermined correction value from the on signal width until the direct-current voltage detected by the voltage detector becomes smaller than or equal to the predetermined first threshold value, and,

when the number of times the correction operation has been performed reaches a predetermined maximum number, or when the direct-current voltage detected by the voltage detector reaches a second threshold value larger than the predetermined first threshold value, stop outputting the on signal to the switch.

4. A method of controlling a direct-current power supply apparatus including a rectifier circuit configured to rectify a power-supply voltage output from an alternating-current power supply, a smoothing capacitor configured to smooth an output voltage of the rectifier circuit and output a direct-current voltage, a switch connected between an output side of the rectifier circuit and an input side of the smoothing capacitor, and a zero crossing detector configured to detect a zero crossing point of the power-supply voltage, the method comprising:

setting a switching period that is a period of an on signal that causes the switch to perform an on switching operation such that timing of the on switching operation of the switch falls between a zero crossing period that is a period for the zero crossing point detected by the zero crossing detector, and a zero crossing average period that is an average value of a plurality of the zero crossing periods detected in a predetermined fixed time period; and

outputting the on signal to the switch in accordance with the set switching period.

5. The method of controlling the direct-current power supply apparatus of claim 4 ,

wherein the direct-current power supply apparatus includes a voltage detector configured to detect the direct-current voltage output from the smoothing capacitor, and

the method comprises:

before the outputting the on signal to the switch,

calculating an on signal width that is a time period during which the on signal is output such that the direct-current voltage detected by the voltage detector coincides with a predetermined target direct-current voltage; and,

when the zero crossing period is larger than the zero crossing average period, setting the on signal width at a value larger than a last on signal width that is an on signal width of the on signal last output, and, when the zero crossing period is smaller than the zero crossing average period, setting the on signal width at a value smaller than the last on signal width.

6. The method of controlling the direct-current power supply apparatus of claim 4 ,

wherein the direct-current power supply apparatus includes a voltage detector configured to detect the direct-current voltage output from the smoothing capacitor, and

the method comprises:

before the outputting the on signal to the switch,

calculating an on signal width that is a time period during which the on signal is output such that the direct-current voltage detected by the voltage detector coincides with a predetermined target direct-current voltage;

when the direct-current voltage detected by the voltage detector is larger than a predetermined first threshold value, repeating a correction operation of subtracting a predetermined correction value from the on signal width until the direct-current voltage detected by the voltage detector becomes smaller than or equal to the predetermined first threshold value; and,

when the number of times the correction operation has been performed reaches a predetermined maximum number, or when the direct-current voltage detected by the voltage detector reaches a second threshold value larger than the predetermined first threshold value, stopping outputting the on signal to the switch.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2022
From: BETSUIN, TOSHIKI; SAKANOBE, KAZUNORI; TANINAKA, SHINGO
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 061106/0917 →
Continuity (1)
Related Publication 20230179112A1 · Jun 8, 2023
Cited By (1)
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