IP Library Granted Patent US 8,869,546
Granted Patent B2
US 8,869,546 · App. 12/938,748 · Granted Oct 28, 2014

Refrigeration demand response recovery

Inventors: John K. Besore (Prospect, KY); Timothy Dale Worthington (Crestwood, KY); Michael F. Finch (Louisville, KY); Darin Franks (Lanesville, IN); William Newton (Brooks, KY); Jeff Donald Drake (Louisville, KY)
Assignee: General Electric Company
F25D29/00F25D21/04H02J2003/143H02J2003/146G05D23/32H02J3/14
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,869,546
App. No.
12/938,748
Granted
Oct 28, 2014
Kind
B2
Abstract

A controller which receives a signal from an external associated energy utility indicative of a forthcoming rate increase period, and controls the rate of temperature change of a refrigerator from a user selected setpoint to a first targeted setpoint below the user selected setpoint. During the rate increase the controller establishes a second target setpoint above the user selected setpoint. After the rate increase period the controller reduces the temperature to the user selected setpoint at a constant rate defined by a number of degrees per minute.

Claims (29)

1. A refrigerator comprising:

a fresh food compartment;

a freezer compartment;

one or more power consuming features configured to respectively cool the fresh food compartment and the freezer compartment to an operational setpoint temperature; and

a controller operatively connected to the one or more power consuming features of the refrigerator and configured to at least:

process signals received from an external associated energy supplying utility indicative of a current state of the external associated energy supplying utility; and

in response to a signal received from the associated utility indicative of a forthcoming rate increase period, automatically and without user input, process the signal to reduce power consumption of the refrigerator by at least:

prior to a rate increase period, effectuate cooling of at least one of the fresh food compartment and the freezer compartment by controlling a temperature change, at a first rate governed by the controller, from a user selected setpoint temperature to a first targeted setpoint temperature below the user selected setpoint temperature;

during the rate increase period, establish a second targeted setpoint temperature of at least one of the fresh food compartment and the freezer compartment above the user selected setpoint temperature; and

after the rate increase period, reduce the second targeted setpoint temperature of at least one of the fresh food compartment and the freezer compartment back to the user selected setpoint temperature, and control, at a second rate governed by the controller, the change from the second targeted setpoint temperature back to the user selected setpoint temperature, the second rate being a constant rate defined by a set number of degrees per minute to smooth out and reduce energy demands occurring after the rate increase period.

2. The refrigerator of claim 1 , wherein the first rate includes a time period from about 40 minutes to about 60 minutes and comprises a rate of temperature setpoint change having a fixed number of degrees per minute from the user selected setpoint temperature to the first targeted setpoint temperature.

3. The refrigerator of claim 2 , wherein the second rate includes a time period from about 40 minutes to about 60 minutes.

4. The refrigerator of claim 1 , wherein the first rate includes a first temperature setpoint change having a number of gradient steps between the user selected setpoint temperature and the first targeted setpoint temperature.

5. The refrigerator of claim 1 , wherein the one or more power consuming features includes an activation mode wherein the activation of the feature occurs over a period of time to include a minimization of the energy consumed after the rate increase time period.

6. A refrigerator comprising:

a fresh food compartment;

a freezer compartment;

a refrigeration system comprising a compressor and configured to respectively cool the fresh food compartment and the freezer compartment to an operational setpoint temperature; and

a controller operatively connected to the refrigeration system and configured to at least:

process signals received from an external associated energy supplying utility indicative of a current state of the external associated energy supplying utility; and

in response to a signal received from the associated utility indicative of a forthcoming rate increase period, automatically and without user input, process the signal and control the refrigeration system to effectuate a reduction in power consumption of the refrigerator by at least:

prior to a rate increase period, effectuate cooling of at least one of the fresh food compartment and the freezer compartment by controlling a temperature change, at a first rate governed by the controller, from a user selected setpoint temperature to a first targeted setpoint temperature below the user selected setpoint temperature;

during the rate increase period, establish a second targeted setpoint temperature of at least one of the fresh food compartment and the freezer compartment above the user selected setpoint temperature; and

after the rate increase period, reduce the second targeted setpoint temperature of at least one of the fresh food compartment and the freezer compartment back to the user selected setpoint temperature, and control, at a second rate governed by the controller, the change from the second targeted setpoint temperature back to the user selected setpoint temperature, the second rate being a constant rate defined by a set number of degrees per minute to smooth out and reduce energy demands occurring after the rate increase period.

7. The refrigerator of claim 6 , wherein the first rate includes a time period from about 40 minutes to about 60 minutes and comprises a first temperature change having a fixed number of degrees every minute from the user selected setpoint temperature to the first targeted setpoint temperature.

8. The refrigerator of claim 7 , wherein the second rate includes a time period from about 40 minutes to about 60 minutes.

9. The refrigerator of claim 6 , wherein the first rate includes a first temperature change having a stepped number of degrees adjusted as a variable as the temperature changes from the user selected setpoint temperature to the first targeted setpoint temperature.

10. The refrigerator of claim 9 , wherein the variable comprises a series of steps based on a range in temperature between the user selected setpoint temperature and the first targeted setpoint temperature.

11. The refrigerator of claim 6 , wherein the controller governs the first rate so that, during the temperature change from the user selected setpoint temperature to the first targeted setpoint temperature, the compressor operates at an output less than its maximum compressor output.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2016
From: GENERAL ELECTRIC COMPANY
To: HAIER US APPLIANCE SOLUTIONS, INC.
Reel/Frame 038966/0459 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2010
From: BESORE, JOHN K.; WORTHINGTON, TIMOTHY DALE; FINCH, MICHAEL F.; NEWTON, WILLIAM; FRANKS, DARIN; DRAKE, JEFF DONALD
To: GENERAL ELECTRIC COMPANY
Reel/Frame 025242/0595 →
Continuity (1)
Related Publication 20120023987A1 · Feb 2, 2012