IP Library Granted Patent US 12,027,844
Granted Patent B2
US 12,027,844 · App. 17/444,847 · Granted Jul 2, 2024

Control of parallel paths during recovery of a power flow control system from a transmission line fault

Inventor: Haroon Inam (San Jose, CA)
Assignee: Smart Wires Inc.
H02H7/122H02H1/0007H02J7/0068H02M7/537H02J7/345
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Quick Facts
Patent No.
US 12,027,844
App. No.
17/444,847
Granted
Jul 2, 2024
Kind
B2
Abstract

A power flow control system and method relate to power flow control for faults on power transmission lines. An inverter has power switching devices and a capacitor. A power-safe circuit holds the power switching devices inactive during an initial fault current of the power transmission line, until a power supply for operating the inverter reaches a threshold.

Claims (53)

1. A power flow control system, comprising:

a four-quadrant inverter having power switching devices and a capacitor, arranged for connection into a power transmission line and charging and discharging the capacitor, wherein each of the power switching devices comprises an antiparallel diode; and

a power-safe circuit connected to the four-quadrant inverter to hold inactive the power switching devices during an initial fault current of the power transmission line, until a power supply for operating the four-quadrant inverter reaches a threshold.

2. The power flow control system of claim 1 , wherein:

the power supply is connected to the power-safe circuit and arranged to couple to a transformer for harvesting electrical power from the power transmission line.

3. The power flow control system of claim 1 , wherein the power-safe circuit comprises:

fail detect circuitry, arranged to connect to the power supply to detect the power supply reaching the threshold.

4. The power flow control system of claim 1 , further comprising a vacuum switched link in parallel with the four-quadrant inverter.

5. The power flow control system of claim 1 , further comprising a bypass unit arranged to bypass the four-quadrant inverter, the bypass unit comprising:

a vacuum switched link (VSL); and

one or more silicon-controlled rectifiers (SCRs).

6. The power flow control system of claim 1 , wherein the power-safe circuit comprises:

driver circuitry connected to drive the four-quadrant inverter; and

the driver circuitry comprising an amplification stage with circuitry to hold inactive each of the power switching devices during the initial fault current of the power transmission line.

7. The power flow control system of claim 1 , further comprising:

redundant control with alternative logic for enabling the power-safe circuit.

8. The power flow control system of claim 1 , further comprising:

a controller to operate the four-quadrant inverter, through the power-safe circuit, for the charging and the discharging of the capacitor.

9. The power flow control system of claim 1 , further comprising:

a bypass unit, connected to the four-quadrant inverter; and

a controller to operate the bypass unit to bypass the four-quadrant inverter.

10. A power flow control system, comprising:

a four-quadrant inverter having power switching devices and a capacitor, wherein each of the power switching devices comprises an antiparallel diode;

a bypass unit connected and arranged to bypass the four-quadrant inverter and arranged for connection to a power transmission line;

a power supply;

a power-safe circuit coupled to the power supply and to the four-quadrant inverter to hold inactive the power switching devices during a fault on the power transmission line, until the power supply reaches a threshold; and

a controller, coupled to the four-quadrant inverter through the power-safe circuit, to control the four-quadrant inverter to charge and discharge the capacitor to compensate for the fault on the power transmission line.

11. The power flow control system of claim 10 , further comprising:

a transformer, connected to the power supply and arranged to couple to the power transmission line, wherein the power supply and the transformer are to cooperate to harvest electrical power from the power transmission line.

12. The power flow control system of claim 10 , wherein the power-safe circuit comprises:

fail detect circuitry connected to the power supply to detect the power supply reaching the threshold.

13. The power flow control system of claim 10 , wherein each of the power switching devices further comprises an insulated gate bipolar transistor (IGBT).

14. The power flow control system of claim 10 , wherein the bypass unit comprises:

a vacuum switched link (VSL); and

a bank of silicon-controlled rectifiers (SCRs).

15. The power flow control system of claim 10 , wherein the power-safe circuit comprises:

driver circuitry comprising an amplification stage connected to the four-quadrant inverter to drive the four-quadrant inverter and having a pull-down resistor to hold inactive each of the power switching devices during an initial fault current of the power transmission line.

16. The power flow control system of claim 10 , wherein the power-safe circuit comprises:

redundant control with alternative logic to direct current amplifier stages connected to the power switching devices of the four-quadrant inverter.

17. The power flow control system of claim 10 , wherein the controller comprises one or more controllers or a distributed controller, to:

operate the bypass unit to bypass the four-quadrant inverter and not bypass the four-quadrant inverter; and

operate the four-quadrant inverter, through the power-safe circuit, for the charging and the discharging of the capacitor with the four-quadrant inverter coupled to the power transmission line through the bypass unit and not bypassed.

18. A method of operation of a power flow control system, comprising:

holding inactive a plurality of power switching devices of a four-quadrant inverter that is coupled to a power transmission line through a bypass unit, during a fault on the power transmission line, until a power supply that is harvesting power from the power transmission line reaches a threshold, wherein each of the plurality of power switching devices comprises an antiparallel diode;

bypassing, through the bypass unit, the four-quadrant inverter; and

operating the four-quadrant inverter to charge and discharge a capacitor of the four-quadrant inverter to compensate for the fault on the power transmission line, with the four-quadrant inverter not bypassed.

19. The method of claim 18 , wherein the bypassing through the bypass unit comprises:

closing a vacuum switched link (VSL) during an initial current rise of the fault on the power transmission line; and

turning on one or more silicon-controlled rectifiers (SCRs) when the power supply reaches the threshold.

20. The method of claim 18 , further comprising:

activating a controller when the power supply reaches the threshold;

operating the bypass unit, by the activated controller; and

operating the four-quadrant inverter, by the activated controller, with the four-quadrant inverter not bypassed by the bypass unit.

Assignments (2)
INTELLECTUAL PROPERTY SECURITYAGREEMENT Recorded Jan 10, 2022
From: SMART WIRES INC.
To: INNOVATUS LIFE SCIENCES LENDING FUND I, LP
Reel/Frame 058653/0190 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2021
From: INAM, HAROON
To: SMART WIRES INC.
Reel/Frame 057146/0470 →
Continuity (2)
Provisional Application 63198316 · Oct 9, 2020
Related Publication 20220115862A1 · Apr 14, 2022