IP Library Granted Patent US 11,022,335
Granted Patent B2
US 11,022,335 · App. 16/869,396 · Granted Jun 1, 2021

Economizer cooling delay correction

Inventors: Robert J. Mowris (Olympic Valley, CA); John Walsh (Bozeman, MT)
F24F11/49F24F11/38F24F11/63F24F11/74G05B19/042G05B23/0218F24F2110/12F24F2120/10F24F2140/40G05B2219/2614
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Quick Facts
Patent No.
US 11,022,335
App. No.
16/869,396
Granted
Jun 1, 2021
Kind
B2
Abstract

A Fault Detection Diagnostic (FDD) correction method for increasing the cooling capacity delivered by an Air-Conditioning (AC) system with an economizer comprising: correcting/superseding at least one cooling fault/delay, the correcting/superseding selected from the group consisting of: correcting/superseding a High-limit-Shut-off-Temperature (HST) fault/delay based on detecting an Outdoor Air Temperature (OAT) is less than or equal to a High-limit-Control Temperature (HCT) during a thermostat call for cooling to enable economizer cooling otherwise delayed by the at least one HST fault/delay, superseding a thermostat second-stage time/temperature-deadband delay based on detecting an OAT is greater than or equal to an AC Control Temperature (ACT) during a call for cooling and energizing an AC compressor otherwise delayed by a thermostat second-stage time/temperature-deadband delay, superseding at least one economizer second-stage time/temperature delay based on detecting a thermostat second-stage cooling signal and energizing an AC compressor otherwise delayed by the at least one economizer second-stage time/temperature delay.

Claims (25)

1. A cooling delay correction method for an Air Conditioning (AC) system comprising a fan, at least one AC compressor, an economizer and a thermostat, the method comprising:

comparing an Outdoor Air-drybulb Temperature (OAT) to a High-limit Control Temperature (HCT) wherein the HCT is greater than or equal to a High-limit Shut-off Temperature (HST);

comparing the OAT to an Air-conditioning Control Temperature (ACT) wherein the ACT is less than the HCT;

increasing the amount of cooling capacity delivered to the conditioned space by the AC system based on detecting the OAT is less than or equal to the HCT at the beginning of a thermostat call for cooling or during the thermostat call for cooling; and

energizing an economizer actuator to move an economizer damper to a fully open damper position for the fan to provide an outdoor airflow to enable an economizer cooling otherwise precluded or delayed by a HST deadband delay.

2. The method of claim 1 , wherein the ACT is a default ACT or a user-selected ACT.

3. The method of claim 1 , wherein the ACT varies from 60 degrees Fahrenheit (F) to the HCT and the HCT varies from 69 F to 80 F.

4. The method of claim 1 , wherein the ACT is a Variable Economizer-drybulb Setpoint Temperature (VEST) and the VEST is adjusted based on a building occupancy, a geofencing signal, an occupancy schedule, or a conditioned space temperature.

5. The method of claim 1 , further including detecting a thermostat second-stage cooling signal is energized and energizing the at least one AC compressor to provide mechanical cooling otherwise precluded or delayed by an economizer second-stage time delay.

6. The method of claim 1 , wherein the increasing the amount of cooling capacity delivered to the conditioned space by the AC system further includes:

enabling the economizer cooling otherwise precluded or delayed by a HST temperature delay.

7. The method of claim 1 , wherein the increasing the amount of cooling capacity delivered to the conditioned space by the AC system further includes:

enabling the economizer cooling otherwise precluded or delayed by a default HST or a user-selected HST which is less than the HCT.

8. The method of claim 1 , wherein the increasing the amount of cooling capacity delivered to the conditioned space by the AC system further includes:

detecting the OAT is greater than the ACT and the OAT is less than or equal to the HCT at the beginning of the thermostat call for cooling or during the thermostat call for cooling; and

energizing an economizer actuator to move a damper to a fully open damper position for the fan to provide an outdoor airflow to enable an economizer cooling and energizing the at least one AC compressor without a thermostat second-stage cooling signal.

9. The method of claim 1 , wherein the increasing the amount of cooling capacity delivered to the conditioned space by the AC system further includes:

detecting the OAT is greater than the ACT and the OAT is less than or equal to the HCT at the beginning of the thermostat call for cooling or during the thermostat call for cooling; and

energizing an economizer actuator to move a damper to a fully open damper position for the fan to provide an outdoor airflow to enable an economizer cooling and energizing the at least one AC compressor without a thermostat second-stage time or temperature delay.

10. The method of claim 1 , wherein the increasing the amount of cooling capacity delivered to the conditioned space by the AC system further includes:

detecting the OAT is greater than the ACT and the OAT is less than or equal to the HCT at the beginning of the thermostat call for cooling or during the thermostat call for cooling; and

energizing an economizer actuator to move a damper to a fully open damper position for the fan to provide an outdoor airflow to enable an economizer cooling and energizing the at least one AC compressor without a thermostat second-stage time delay.

11. The method of claim 1 , wherein the increasing the amount of cooling capacity delivered to the conditioned space by the AC system further includes:

detecting a thermostat second-stage cooling signal; and

energizing the at least one AC compressor without an economizer second-stage temperature delay.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2022
From: WALSH, JOHN
To: LAU, JAMES
Reel/Frame 062191/0616 →
Continuity (9)
Continuation In Part 16565464 · Sep 9, 2019
Continuation In Part 16289313 · Feb 28, 2019
Continuation In Part 16869396
Continuation In Part 16011120 · Jun 18, 2018
Continuation In Part 15614600 · Jun 5, 2017
Continuation In Part 15358131 · Nov 22, 2016
Continuation In Part 15169586 · May 31, 2016
Provisional Application 62728518 · Sep 7, 2018
Related Publication 20200363087A1 · Nov 19, 2020
Cited By (1)
US 12,523,384