IP Library Granted Patent US 12,088,213
Granted Patent B2
US 12,088,213 · App. 17/747,565 · Granted Sep 10, 2024

Power supply unit for vehicle charging

Inventors: Marco Tremblay (Pierrefonds, CA); Sheila Tremblay (Pierrefonds, CA)
Assignee: HI-POWER SOLUTIONS INC.
H02M7/2176H02M3/1586H02M7/06B60L53/67H02J7/02
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Quick Facts
Patent No.
US 12,088,213
App. No.
17/747,565
Granted
Sep 10, 2024
Kind
B2
Abstract

There is described a power supply unit having at least one alternating current (AC) input and at least one direct current (DC) output for producing an output voltage. The power supply unit comprises at least one input transformer coupled to the at least one AC input and at least one rectification circuit defining an AC side and a DC side, and coupled to the at least one input transformer on the AC side. The at least one rectification circuit comprises a diode rectifier section on the AC side comprising at least one set of diode rectifiers, and a controlled rectifier section in series with the diode rectifier section and configured for producing a variable load voltage to modulate the output voltage between a base voltage and a maximum value of the output voltage using at least one set of three single-phase controlled rectifiers usable as one to three DC outputs to form a three-phase controlled rectifier.

Claims (26)

1. A power supply unit having at least one alternating current (AC) input and at least one direct current (DC) output for producing an output voltage, the power supply unit comprising:

at least one input transformer coupled to the at least one AC input; and

at least one rectification circuit defining an AC side and a DC side, and coupled to the at least one input transformer on the AC side, the at least one rectification circuit comprising:

a diode rectifier section coupled to the at least one input transformer on the AC side, the diode rectifier section comprising at least one set of single-phase diode rectifiers per phase and configured for providing a base voltage from the at least one set of single-phase diode rectifiers; and

a controlled rectifier section connected in series with the diode rectifier section on the DC side and coupled to the at least one input transformer on the AC side, the controlled rectifier section being configured for producing a variable load voltage to modulate the output voltage between the base voltage and a maximum value of the output voltage, the controlled rectifier section comprising at least one set of single-phase controlled rectifiers per phase, wherein each of the single-phase controlled rectifiers comprises at least a boost converter and, for each phase, the at least one set of single-phase diode rectifiers is connected in series with the at least one set of single-phase controlled rectifiers for independently rectifying each phase of the at least one input transformer, and the at least one set of single-phase controlled rectifiers is configured to impose a DC current waveform onto the at least one set of single-phase diode rectifiers for reducing harmonics produced by the at least one set of single-phase diode rectifiers.

2. The power supply unit of claim 1 , further comprising a switching array coupled to the diode rectifier section and the controlled rectifier section, and configured for selectively providing the output voltage to loads connected at the at least one DC output.

3. The power supply unit of claim 2 , wherein the switching array is further configured for switching in other DC sources to replace or supplement the diode rectifier section.

4. The power supply unit of claim 1 , further comprising a switching array coupled to the diode rectifier section and the controlled rectifier section, and configured for selecting an AC source for at least some of the diode rectifiers and the controlled rectifiers.

5. The power supply unit of claim 1 , wherein the at least one set of diode rectifiers is provided for each galvanically isolated secondary winding of the at least one input transformer.

6. The power supply unit of claim 1 , wherein the at least one set of diode rectifiers comprises three single-phase diode rectifiers.

7. The power supply unit of claim 1 , wherein the at least one set of diode rectifiers comprises a plurality of sets, each one of the sets providing a fixed voltage step of the base voltage.

8. The power supply unit of claim 1 , further comprising a plurality of switches connected between the at least one input transformer and the diode rectifier section for selectively activating and deactivating individual ones of the sets of diode rectifiers.

9. The power supply unit of claim 1 , wherein each of the single-phase controlled rectifiers comprises a buck-boost converter, the buck-boost converter being a combination of the boost converter and a buck converter.

10. The power supply unit of claim 9 , wherein the single-phase controlled rectifiers comprise a four-diode bridge having an output that feeds the buck converter, and wherein the buck converter shares an inductor with the boost converter.

11. The power supply unit of claim 9 , wherein the single-phase controlled rectifiers comprise interleaved buck-boost converters connected in parallel.

12. The power supply unit of claim 1 , wherein the single-phase controlled rectifiers comprise a four-diode bridge having an output that feeds the boost converter.

13. The power supply unit of claim 1 , wherein the single-phase controlled rectifiers comprise interleaved boost converters connected in parallel.

14. The power supply unit of claim 3 , wherein the switching array comprises a plurality of switches connected between the diode rectifier section and the controlled rectifier section and the DC sources and loads for dynamically forming sub-groups of rectifiers.

15. The power supply unit of claim 2 , wherein the switching array is configured for switching in one of a DC source and a storage device to replace or supplement some or all of the diode rectifiers.

16. The power supply unit of claim 1 , wherein some or all of the diode rectifiers and the controlled rectifiers supply current to one of an energy storage device, an electrolyzer, and one or more internal loads.

17. The power supply unit of claim 1 , wherein the diode rectifier section further comprises at least one three-phase diode rectifier.

18. A power supply unit having at least one alternating current (AC) input and at least one direct current (DC) output for producing an output voltage, the power supply unit comprising:

at least one input transformer coupled to the at least one AC input; and

at least one rectification circuit defining an AC side and a DC side, and coupled to the at least one input transformer on the AC side, the at least one rectification circuit comprising:

a diode rectifier section coupled to the at least one input transformer on the AC side, the diode rectifier section comprising at least one set of single-phase diode rectifiers per phase and configured for providing a base voltage from the at least one set of single-phase diode rectifiers; and

a controlled rectifier section connected in series with the diode rectifier section on the DC side and coupled to the at least one input transformer on the AC side, the controlled rectifier section being configured for producing a variable load voltage to modulate the output voltage between the base voltage and a maximum value of the output voltage, the controlled rectifier section comprising at least one set of single-phase controlled rectifiers per phase, wherein each of the single-phase controlled rectifiers comprises at least a buck converter and, for each phase, the at least one set of single-phase diode rectifiers is connected in series with the at least one set of single-phase controlled rectifiers for independently rectifying each phase of the at least one input transformer, and the at least one set of single-phase controlled rectifiers is configured to impose a DC current waveform onto the at least one set of single-phase diode rectifiers for reducing harmonics produced by the at least one set of single-phase diode rectifiers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2024
From: TREMBLAY, MARCO; TREMBLAY, SHEILA
To: HI-POWER SOLUTIONS INC.
Reel/Frame 068185/0466 →
Continuity (2)
Provisional Application 63190369 · May 19, 2021
Related Publication 20220376631A1 · Nov 24, 2022
Cited By (2)
US 12,600,259 US 12,633,838