IP Library Granted Patent US 8,773,101
Granted Patent B2
US 8,773,101 · App. 13/197,954 · Granted Jul 8, 2014

Power management for loads supplied with power from wild sources

Inventors: Michael Krenz (Roscoe, IL); Carl A. Wagner (Beloit, WI); Todd A. Spierling (Byron, IL)
Assignee: Hamilton Sundstrand Corporation
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Quick Facts
Patent No.
US 8,773,101
App. No.
13/197,954
Granted
Jul 8, 2014
Kind
B2
Abstract

A solid-state power regulator (SSPR) regulates power delivered to a frequency tolerant load from a wild-source generator. The SSPR includes a solid-state switching device and a controller. The solid-state switching device is turned On to deliver power from the wild-source generator to the frequency-tolerant load and Off to prevent the delivery of power to the frequency-tolerant load. The controller monitors the power delivered to the frequency-tolerant load and selectively modulates the solid-state switching device to regulate the power delivered.

Claims (15)

1. A solid-state power regulator (SSPR) for regulating power delivered to a frequency tolerant load from a wild-source generator, the SSPR comprising:

a solid-state switching device that delivers alternating current power from the wild-source power source to the frequency-tolerant load when On and prevents the delivery of power from the wild-source power source to the frequency-tolerant load when Off; and

a controller connected to monitor current delivered to the frequency-tolerant load and voltage applied to the frequency-tolerant load, wherein the controller calculates power delivered to the frequency-tolerant load by calculating instantaneous power delivered to the frequency-tolerant load and calculating an average power delivered to the frequency-tolerant load, and the controller selectively turns the solid-state switching device On and Off to regulate alternating current power delivered to the frequency-tolerant load.

2. The SSPR of claim 1 wherein the controller selectively modulates the solid-state switching device to minimize the difference between the average power delivered to the frequency-tolerant load and a desired power.

3. The SSPR of claim 2 wherein the controller employs pulse-width modulation (PWM) to modulate the solid-state switching device.

4. The SSPR of claim 1 wherein the solid-state switching device is a silicon carbide (SiC) transistor.

5. An electric power generation and distribution system (EPGDS) for comprising:

a wild-source generator that generates a wild-source output;

a frequency-tolerant load;

a solid-state power regulator (SSPR) having a solid-state switching device and a controller, wherein the controller monitors alternating current power delivered to the frequency-tolerant load from the wild-source generator by calculating instantaneous power delivered to the frequency-tolerant load and calculating an average power delivered to the frequency-tolerant load, and the controller modulates the solid-state switching device to regulate the alternating current power delivered to the frequency-tolerant load.

6. The EPGDS of claim 5 wherein the frequency-tolerant load is a resistive load.

7. The EPGDS of claim 5 wherein the controller calculates the average power delivered to the frequency-tolerant load based on the calculated instantaneous power and modulates the solid-state switching device to regulate the average power delivered to the frequency-tolerant load.

8. The EPGDS of claim 7 , wherein the controller selectively modulates the solid-state switching device to minimize a difference between the average power delivered to the frequency-tolerant load and a desired power.

9. The EPGDS of claim 5 , wherein the controller employs pulse-width modulation (PWM) to modulate the solid-state switching device.

10. The EPGDS of claim 5 , wherein the solid-state switching device is a silicon carbide (SiC) transistor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2011
From: KRENZ, MICHAEL; WAGNER, CARL A.; SPIERLING, TODD A.
To: HAMILTON SUNDSTRAND CORPORATION
Reel/Frame 026700/0117 →
Continuity (1)
Related Publication 20130033246A1 · Feb 7, 2013