IP Library Granted Patent US 11,473,799
Granted Patent B2
US 11,473,799 · App. 16/989,460 · Granted Oct 18, 2022

Systems and methods for intelligent pic valves with agent interaction

Inventors: Sudhi R. Sinha (Milwaukee, WI); Donald R. Albinger (New Berlin, WI); Youngchoon Park (Brookfield, WI); Karl F. Reichenberger (Mequon, WI); John T. Pierson (Whitefish Bay, WI); Vineet Sinha (Milwaukee, WI)
Assignee: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
F24F11/38F16K37/0075F24F11/32F24F11/54F24F11/64F24F11/65F24F11/74F24F11/80F24F11/83F24F11/84F24F11/873G05B13/0265G05B13/041G05B15/02G05D7/0652G05D7/0664G06Q50/16F24F11/86F24F2140/12F24F2140/20F24F2140/40G05B2219/2642
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Quick Facts
Patent No.
US 11,473,799
App. No.
16/989,460
Granted
Oct 18, 2022
Kind
B2
Abstract

A flow control device is configured to control fluid flow in an HVAC system. The flow control device includes a valve, an actuator configured to open and close the valve, and one or more sensors. The flow control device further includes a fault detection and correction agent configured to receive data from the one or more sensors, analyze the data according to a set of rules, and detect whether one or more faults have occurred. In response to detecting a fault, the fault detection and correction agent is configured to either operate the actuator to open or close the valve or initiate a corrective action to be taken by another device in the HVAC system.

Claims (37)

1. A flow control device configured to control fluid flow in an HVAC system, the flow control device comprising:

a valve, one or more sensors, and an actuator configured to open and close the valve; and

one or more processors configured to:

receive data from the one or more sensors;

analyze the data from the one or more sensors according to a set of rules; and

detect whether one or more faults have occurred;

determine whether the fault can be corrected by opening or closing the valve;

in response to determining the fault can be corrected by opening or closing the valve, correct the fault by operating the actuator to open or close the valve;

in response to determining the fault cannot be corrected by opening or closing the valve, initiate a corrective action to be taken by another device in the HVAC system.

2. The flow control device of claim 1 , wherein the fault is a low temperature fault.

3. The flow control device of claim 2 , wherein the other device in the HVAC system is a boiler and the corrective action includes operating the boiler to produce heated fluid.

4. The flow control device of claim 1 , wherein the fault is a high temperature fault.

5. The flow control device of claim 4 , wherein the other device in the HVAC system is a chiller and the corrective action includes operating the chiller to produce chilled fluid.

6. The flow control device of claim 1 , wherein the fault is either a high pressure fault or a low pressure fault.

7. The flow control device of claim 6 , wherein the other device in the HVAC system is a pump and the one or more processors are further configured to operate the pump to either increase or decrease fluid pressure.

8. The flow control device of claim 1 , wherein initiating the corrective action to be taken by another device in the HVAC system includes communication with one or more additional processors.

9. The flow control device of claim 1 , wherein the one or more sensors include a thermistor embedded in the valve.

10. A flow control system configured to control fluid flow in an HVAC system, the flow control system comprising:

a first flow control device comprising a first valve, one or more sensors, and a first actuator configured to open and close the first valve;

a second flow control device comprising, a second valve, one or more sensors, and a second actuator configured to open and close the second valve;

a controller comprising one or more processors configured to:

receive data from the one or more sensors of the first flow control device and the second flow control device; and

determine an optimal position of the first valve using the data from both the first flow control device and the second flow control device.

11. The flow control system of claim 10 , wherein the first flow control device and the second flow control device operate in series to provide heated fluid to a heating coil or chilled fluid to a cooling coil.

12. The flow control system of claim 11 , wherein the one or more processors are further configured to determine the optimal position of the first valve based on the optimal position of the second valve and a setpoint associated with the heating coil or the cooling coil.

13. The flow control system of claim 10 , wherein the first flow control device and the second flow control device operate in parallel with a common discharge to provide heated fluid to a heating coil or chilled fluid to a cooling coil.

14. The flow control system of claim 13 , wherein the one or more processors are further configured to determine the optimal position of the first valve based on the optimal position of the second valve and a setpoint associated with the heating coil or the cooling coil.

15. The flow control system of claim 10 , wherein the first flow control device and the second flow control device operate in parallel with a common intake to provide heated fluid to two heating coils or chilled fluid to two cooling coils.

16. The flow control system of claim 15 , wherein the one or more processors are further configured to determine the optimal position of the first valve based on the optimal position of the second valve and a setpoint associated with the two heating coils or the two cooling coils.

17. A flow control system configured to control fluid flow in an HVAC system, the flow control system comprising:

a plurality of flow control devices, each of the plurality of flow control devices comprising a valve, one or more sensors, and an actuator configured to open and close the valve; and

one or more processors configured to:

receive and use data from the one or more sensors to generate a model for each flow control device using a system identification process,

wherein the one or more processors operate the actuator of each flow control device according to the generated model.

18. The flow control system of claim 17 , wherein the one or more processors are further configured to filter extraneous data and disturbances from the input data.

19. The flow control system of claim 17 , wherein the one or more processors are further configured to update a set of model parameters using training data.

20. The flow control system of claim 19 , wherein the one or more processors are further configured to update the model parameters at a predefined time interval.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2024
From: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
To: TYCO FIRE & SECURITY GMBH
Reel/Frame 067056/0552 →
NUNC PRO TUNC ASSIGNMENT Recorded Feb 4, 2022
From: JOHNSON CONTROLS TECHNOLOGY COMPANY
To: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
Reel/Frame 058959/0764 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2020
From: SINHA, VINEET; ALBINGER, DONALD R.
To: JOHNSON CONTROLS TECHNOLOGY COMPANY
Reel/Frame 053452/0883 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2020
From: PARK, YOUNGCHOON; REICHENBERGER, KARL F.; PIERSON, JOHN T.
To: JOHNSON CONTROLS TECHNOLOGY COMPANY
Reel/Frame 053452/0958 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2020
From: SINHA, SUDHI R.
To: JOHNSON CONTROLS TECHNOLOGY COMPANY
Reel/Frame 053453/0116 →
Continuity (3)
Continuation 15968278 · May 1, 2018
Provisional Application 62492825 · May 1, 2017
Related Publication 20210025612A1 · Jan 28, 2021