IP Library Granted Patent US 9,647,568
Granted Patent B1
US 9,647,568 · App. 14/182,268 · Granted May 9, 2017

Bi-directional multi-port applications

Inventors: Paul Bundschuh (Spicewood, TX); William C. Alexander (Spicewood, TX); Guy Michael Barron (Austin, TX); Christopher Cobb (Spicewood, TX); Paul Roush (Spicewood, TX)
Assignee: IDEAL POWER, INC.
H02M5/225H02M3/1582H02M3/33584H02M5/293H02M5/297H02M5/458H02M7/4807H02M7/797H02M2007/4815Y02B70/1441
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Quick Facts
Patent No.
US 9,647,568
App. No.
14/182,268
Granted
May 9, 2017
Kind
B1
Abstract

Methods and systems for bi-directional multi-port power conversion systems and applications are disclosed. In some sample embodiments, current-modulating power converters can be used to provide conversion between synchronous and asynchronous power. In some sample embodiments, current-modulating power converters can perform power conversion can be performed to and from three-phase AC with an active neutral line. In some sample embodiments, current-modulating power converters can convert between synchronous and asynchronous power and also support three-phase AC with active neutral.

Claims (34)

1. A bi-directional power converter, comprising:

at least two phase legs each connected to a respective phase line of a first port; each said phase leg comprising two fully bidirectional switching devices, so that the line connected to that phase leg can either source or sink current to either terminal of a link inductor which is paralleled by a capacitor;

at least four other phase legs each connected to a respective line of a second port; each said phase leg comprising two fully bidirectional switching devices, so that the line connected to that phase leg can either source or sink current to either terminal of said link inductor; wherein said lines of said second port provide three phase lines and a neutral line; and,

control circuitry which is connected to drive said switches so that said link inductor is coupled to each said phase line of said first and second ports at least twice, with opposite polarities, during each full cycle of AC oscillation of said link inverter;

and wherein said control circuitry is also connected to detect drift of the neutral line of said second port, and configured to apply drive to said neutral line;

wherein said control circuitry drives said switches so as to synchronize the phase of output current to the phase of an output port.

2. The bi-directional power converter of claim 1 , where the respective lines of the first port are connected to a super capacitor.

3. The bi-directional power converter of claim 1 , where the respective lines of the first port are connected to a rechargeable battery.

4. The bi-directional power converter of claim 1 , where the respective lines of the second port are connected to an engine motor.

5. The bi-directional power converter of claim 1 , where the respective lines of the second port are connected to a drive motor.

6. A bi-directional power converter, comprising:

at least two phase legs each connected to a respective phase line of a first port; each said phase leg comprising two fully bidirectional switching devices, so that the line connected to that phase leg can either source or sink current to either terminal of a link inductor which is paralleled by a capacitor;

at least four other phase legs each connected to a respective line of a second port; each said phase leg comprising two fully bidirectional switching devices, so that the line connected to that phase leg can either source or sink current to either terminal of said link inductor; wherein said lines of said second port provide three phase lines and a neutral line; and,

control circuitry which is connected to drive said switches so that said link inductor is coupled to each said phase line of said first and second ports at least twice, with opposite polarities, during each full cycle of AC oscillation of said link inverter;

wherein said control circuitry is also connected to detect drift of the neutral line of said second port, and configured to apply drive to said neutral line;

wherein said control circuitry drives said switches so as to synchronize the phase of output current to the phase of an output port; and

wherein said link inductor comprises a transformer.

7. The bi-directional power converter of claim 6 , where the respective lines of the first port are connected to a rechargeable battery.

8. The bi-directional power converter of claim 6 , where the respective lines of the second port are connected to an engine motor.

9. The bi-directional power converter of claim 6 , where the respective lines of the second port are connected to a drive motor.

10. A bi-directional power converter, comprising:

at least two phase legs each connected to a respective phase line of a first port; each said phase leg comprising two fully bidirectional switching devices, so that the line connected to that phase leg can either source or sink current to either terminal of a link inductor which is paralleled by capacitor;

at least two other phase legs each connected to a respective line of a second port;

each said phase leg comprising two fully bidirectional switching devices, so that the line connected to that phase leg can either source or sink current to either terminal of said link inductor; wherein said lines of said second port provide three phase lines and a neutral line;

at least two other phase legs each connected to a respective phase line of a third port; each said phase leg comprising two fully bidirectional switching devices, so that the line connected to that phase leg can either source or sink current to either terminal of said link inductor;

control circuitry which is connected to drive said switches so that said link inductor is coupled to each said phase of said first and second ports at least twice, with opposite polarities; during each full cycle of AC oscillation of said link inverter;

wherein said control circuitry drives said switches so as to synchronize the phase of output current to the phase of an output port; and

wherein said control circuitry is also connected to detect drift of the neutral line of said second port, and configured to apply drive to said neutral line.

11. The bi-directional power converter of claim 10 , where the respective lines of the first port are connected to a super capacitor.

12. The bi-directional power converter of claim 10 , where the respective lines of the first port are connected to a rechargeable battery.

13. The bi-directional power converter of claim 10 , where the respective lines of the second port are connected to an engine motor.

14. The bi-directional power converter of claim 10 , where the respective lines of the second port are connected to a drive motor.

15. The bi-directional power converter of claim 10 , where the respective lines of the third port are connected to a super capacitor.

16. The bi-directional power converter of claim 10 , where the respective lines of the third port are connected to a rechargeable battery.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2020
From: CE+T ENERGY SOLUTIONS INC.
To: CE+T GROUP SA
Reel/Frame 052810/0773 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2019
From: IDEAL POWER INC.
To: CE+T ENERGY SOLUTIONS INC.
Reel/Frame 051112/0840 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2019
From: PATHION HOLDINGS, INC.; PATHION, INC.
To: IDEAL POWER INC.
Reel/Frame 050341/0761 →
COURT ORDER Recorded Sep 4, 2019
From: PATHION, INC.; PATHION HOLDINGS, INC.
To: IDEAL POWER INC.
Reel/Frame 050270/0702 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2019
From: IDEAL POWER INC.
To: PATHION HOLDINGS, INC.
Reel/Frame 049934/0768 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2018
From: BUNDSCHUH, PAUL; ALEXANDER, WILLIAM C.; BARRON, GUY MICHAEL; ROUSH, PAUL
To: IDEAL POWER, INC.
Reel/Frame 047184/0622 →
Continuity (2)
Provisional Application 61778648 · Mar 13, 2013
Provisional Application 61765126 · Feb 15, 2013