IP Library Granted Patent US 12,105,491
Granted Patent B2
US 12,105,491 · App. 17/554,499 · Granted Oct 1, 2024

VAV self commissioning in a building automation system

Inventor: Harshal Patil (Pune, IN)
Assignee: Tyco Fire & Security GmbH
G05B19/042F24F11/38F24F11/49F24F11/72G05B2219/25011G05B2219/2614
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Quick Facts
Patent No.
US 12,105,491
App. No.
17/554,499
Granted
Oct 1, 2024
Kind
B2
Abstract

A method for commissioning a variable air volume (VAV) system is shown. The method includes receiving instructions via an application on a user interface, the instructions provided over a wireless communications network. The method further includes determining that a cold commissioning testing sequence has been completed for the VAV system. The method further includes, in response to determining that the cold commissioning testing sequence has been completed, initiating a hot commissioning testing sequence. The method further includes performing the hot commissioning testing sequence. The method further includes providing a report of the hot commissioning testing sequence to the user interface.

Claims (77)

1. A method for commissioning a variable air volume (VAV) system, the method comprising:

receive instructions via an application on a user interface, the instructions provided over a wireless communications network;

determine that a cold commissioning testing sequence has been completed for the VAV system, wherein determining that the cold commissioning testing sequence has been completed comprises performing a pre-test prior to a hot commissioning testing sequence, the pre-test configured to provide test signals to equipment within the VAV system to determine that the VAV system has been installed correctly;

in response to determining that the cold commissioning testing sequence has been completed, initiate the hot commissioning testing sequence;

perform the hot commissioning testing sequence; and

provide a report of the hot commissioning testing sequence to the user interface.

2. The method of claim 1 , wherein:

the cold commissioning testing sequence is performed to determine that mechanical and electrical installation of the VAV system has been completed in a correct manner; and

the hot commissioning testing sequence is performed to determine that control functionality and input/output functionality is operating in a correct manner.

3. The method of claim 1 , wherein initiating the hot commissioning testing sequence comprises performing a series of steps that determine whether components of the VAV system are operating correctly, wherein performing the series of steps comprises:

providing control signals from a localized VAV controller to HVAC equipment to initiate the series of steps; and

receiving sensor data at the localized VAV controller, the sensor data comprising information related to operation of the VAV system.

4. The method of claim 1 , wherein providing a report of the hot commissioning testing sequence to the user interface comprises:

providing operational data measured from VAV sensors during the hot commissioning testing sequence;

providing an indication of operability based on the operational data, the indication of operability indicating whether the VAV system is operating within an acceptable threshold.

5. The method of claim 4 , wherein the method further comprises:

in response to the indication of operability indicating the VAV system is operating outside of the acceptable threshold, automatically adjusting a control schema of the VAV system; or

in response to the indication of operability indicating the VAV system is operating outside of the acceptable threshold, providing a notification to the user interface indicating that a user is required to travel to the physical location of the VAV system to correct the VAV system.

6. The method of claim 1 , wherein receiving instructions via the application on the user interface comprises receiving instructions to perform the hot commissioning testing sequence via system configuration application on the user interface, the user interface hosted on a device located at a different building than the VAV system.

7. The method of claim 1 , further comprising:

in response to the instructions, performing a simulated cold commission testing sequence for the VAV system, wherein the simulated cold commission testing sequence comprises validating an application logic of the VAV system.

8. A method for commissioning a variable air volume (VAV) system, the method comprising:

receiving instructions via an application on a user interface, the instructions provided over a wireless communications network;

determining that a cold commissioning testing sequence has been completed for the VAV system;

in response to determining that the cold commissioning testing sequence has been completed, initiating a hot commissioning testing sequence;

performing the hot commissioning testing sequence;

providing a report of the hot commissioning testing sequence to the user interface;

receiving instructions to perform a subsequent hot commissioning testing sequence a period of time after the report of the hot commissioning testing sequence was provided to the user interface;

performing the subsequent hot commissioning testing sequence;

determining that the VAV system is operating outside of an acceptable threshold; and

providing a notification to the user interface indicating that a user is required to travel to the physical location of the VAV system to correct the VAV system.

9. A variable air volume (VAV) system controller configured to commission a VAV system, the controller comprising a processing circuit comprising one or more processors and memory storing instructions that, when executed by the one or more processors, cause the one or more processors to perform operations comprising:

receiving instructions via an application on a user interface, the instructions provided over a wireless communications network;

determining that a cold commissioning testing sequence has been completed for the VAV system, wherein determining that the cold commissioning testing sequence has been completed comprises performing a pre-test prior to a hot commissioning testing sequence, the pre-test configured to provide test signals to equipment within the VAV system to determine that the VAV system has been installed correctly;

in response to determining that the cold commissioning testing sequence has been completed, initiating the hot commissioning testing sequence;

performing the hot commissioning testing sequence; and

providing a report of the hot commissioning testing sequence to the user interface.

10. The controller of claim 9 , wherein:

the cold commissioning testing sequence is performed to determine that mechanical and electrical installation of the VAV system has been completed in a correct manner; and

the hot commissioning testing sequence is performed to determine that control functionality and input/output functionality is operating in a correct manner.

11. The controller of claim 9 , wherein initiating the hot commissioning testing sequence comprises performing a series of steps that determine whether components of the VAV system are operating correctly, wherein performing the series of steps comprises:

providing control signals from a localized VAV controller to HVAC equipment to initiate the series of steps; and

receiving sensor data at the localized VAV controller, the sensor data comprising information related to operation of the VAV system.

12. The controller of claim 9 , wherein providing a report of the hot commissioning testing sequence to the user interface comprises:

providing operational data measured from VAV sensors during the hot commissioning testing sequence;

providing an indication of operability based on the operational data, the indication of operability indicating whether the VAV system is operating within an acceptable threshold.

13. The controller of claim 12 , wherein the processing circuit is further configured to:

in response to the indication of operability indicating the VAV system is operating outside of the acceptable threshold, automatically adjust a control schema of the VAV system; or

in response to the indication of operability indicating the VAV system is operating outside of the acceptable threshold, provide a notification to the user interface indicating that a user is required to travel to the physical location of the VAV system to correct the VAV system.

14. The controller of claim 9 , wherein receiving instructions via the application on the user interface comprises receiving instructions to perform the hot commissioning testing sequence via system configuration application on the user interface, the user interface hosted on a device located at a different building than the VAV system.

15. The controller of claim 9 , wherein the processing circuit is further configured to:

in response to the instructions, perform a simulated cold commission testing sequence for the VAV system, wherein the simulated cold commission testing sequence comprises validating an application logic of the VAV system.

16. A variable air volume (VAV) system controller configured to commission a VAV system, the controller comprising a processing circuit comprising one or more processors and memory storing instructions that, when executed by the one or more processors, cause the one or more processors to perform operations comprising:

receiving instructions via an application on a user interface, the instructions provided over a wireless communications network;

determining that a cold commissioning testing sequence has been completed for the VAV system;

in response to determining that the cold commissioning testing sequence has been completed, initiating a hot commissioning testing sequence;

performing the hot commissioning testing sequence;

providing a report of the hot commissioning testing sequence to the user interface;

receive instructions to perform a subsequent hot commissioning testing sequence a period of time after the report of the hot commissioning testing sequence was provided to the user interface;

preform the subsequent hot commissioning testing sequence;

determine that the VAV system is operating outside of an acceptable threshold; and

provide a notification to the user interface indicating that a user is required to travel to the physical location of the VAV system to correct the VAV system.

17. A non-transitory computer-readable storage media having computer-executable instructions stored thereon that, when executed by one or more processors of a variable air volume (VAV) system, cause the VAV system to perform operations comprising:

receiving instructions via an application on a user interface, the instructions provided over a wireless communications network;

determining that a cold commissioning testing sequence has been completed for the VAV system, wherein determining that the cold commissioning testing sequence has been completed comprises performing a pre-test prior to a hot commissioning testing sequence, the pre-test configured to provide test signals to equipment within the VAV system to determine that the VAV system has been installed correctly;

in response to determining that the cold commissioning testing sequence has been completed, initiating a hot commissioning testing sequence;

performing the hot commissioning testing sequence; and

providing a report of the hot commissioning testing sequence to the user interface.

18. The media of claim 17 , wherein:

the cold commissioning testing sequence is performed to determine that mechanical and electrical installation of the VAV system has been completed in a correct manner; and

the hot commissioning testing sequence is performed to determine that control functionality and input/output functionality is operating in a correct manner.

19. The media of claim 17 , wherein initiating the hot commissioning testing sequence comprises performing a series of steps that determine whether components of the VAV system are operating correctly, wherein performing the series of steps comprises:

providing control signals from a localized VAV controller to HVAC equipment to initiate the series of steps; and

receiving sensor data at the localized VAV controller, the sensor data comprising information related to operation of the VAV system.

20. The media of claim 17 , wherein providing a report of the hot commissioning testing sequence to the user interface comprises:

providing operational data measured from VAV sensors during the hot commissioning testing sequence;

providing an indication of operability based on the operational data, the indication of operability indicating whether the VAV system is operating within an acceptable threshold.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2024
From: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
To: TYCO FIRE & SECURITY GMBH
Reel/Frame 066957/0796 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2022
From: PATIL, HARSHAL
To: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
Reel/Frame 060016/0531 →
Priority Claims (1)
IN 202021055254 · Dec 18, 2020 · national
Continuity (1)
Related Publication 20220197234A1 · Jun 23, 2022