IP Library Granted Patent US 11,079,134
Granted Patent B2
US 11,079,134 · App. 16/225,764 · Granted Aug 3, 2021

Computing device and method for inferring via a neural network a two-dimensional temperature mapping of an area

Inventor: Francois Gervais (Lachine, CA)
Assignee: DISTECH CONTROLS INC.
F24F11/63F24F11/50G06N3/08G06N5/046F24F2110/10
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 11,079,134
App. No.
16/225,764
Granted
Aug 3, 2021
Kind
B2
Abstract

Computing device and method for inferring via a neural network a two-dimensional temperature mapping of an area. A predictive model is stored by the computing device. The computing device receives a plurality of temperature measurements transmitted by a corresponding plurality of temperature sensors located at a corresponding plurality of locations on a periphery of the area. The computing device executes a neural network inference engine, using the predictive model for inferring outputs based on inputs. The inputs comprise the plurality of temperature measurements. The outputs consist of a plurality of temperature values at a corresponding plurality of zones, the plurality of zones being comprised in a two-dimensional grid mapped on a plane within the area. For instance, the area is a room of a building, the periphery is an interface of a ceiling and walls of the room, and the plane is a horizontal plane within the room.

Claims (30)

1. A method for inferring via a neural network a two-dimensional temperature mapping of a room of a building, the method comprising:

storing a predictive model generated by a neural network training engine in a memory of a computing device;

receiving by a processing unit of the computing device a plurality of temperature measurements transmitted by a corresponding plurality of temperature sensors located at a corresponding plurality of locations on an interface of a ceiling and walls of the room;

executing by the processing unit of the computing device a neural network inference engine using the predictive model for inferring outputs based on inputs, the inputs of the neural network inference engine comprising the plurality of temperature measurements, the outputs of the neural network inference engine consisting of a plurality of inferred temperature values at a corresponding plurality of zones, the plurality of zones being comprised in a two-dimensional grid mapped on a plane within the room; and

generating by the processing unit of the computing device one or more command for controlling one or more appliance based at least on the plurality of inferred temperature values.

2. The method of claim 1 , wherein the plane within the room is a horizontal plane parallel to a floor of the room and located at a given height above the floor.

3. The method of claim 1 , wherein the predictive model comprises weights used by the neural network inference engine for inferring the outputs based on the inputs.

4. The method of claim 1 , wherein the inputs further comprise at least one of the following: a humidity level measurement in the room, a carbon dioxide level measurement in the room, an external temperature measurement outside the room, an external humidity level measurement outside the room, and a period of time.

5. The method of claim 1 , further comprising transmitting the one or more command to the one or more controlled appliance.

6. The method of claim 1 , wherein the plurality of temperature sensors is integrated to a molding installed at the interface of the ceiling and walls of the room.

7. A non-transitory computer program product comprising instructions executable by a processing unit of a computing device, the execution of the instructions by the processing unit of the computing device providing for inferring via a neural network a two-dimensional temperature mapping of a room of a building by:

storing a predictive model generated by a neural network training engine in a memory of the computing device;

receiving by the processing unit of the computing device a plurality of temperature measurements transmitted by a corresponding plurality of temperature sensors located at a corresponding plurality of locations on an interface of a ceiling and walls of the room;

executing by the processing unit of the computing device a neural network inference engine using the predictive model for inferring outputs based on inputs, the inputs of the neural network inference engine comprising the plurality of temperature measurements, the outputs of the neural network inference engine consisting of a plurality of inferred temperature values at a corresponding plurality of zones, the plurality of zones being comprised in a two-dimensional grid mapped on a plane within the room; and

generating by the processing unit of the computing device one or more command for controlling one or more appliance based at least on the plurality of inferred temperature values.

8. The computer program product of claim 7 , wherein the predictive model comprises weights used by the neural network inference engine for inferring the outputs based on the inputs.

9. The computer program product of claim 7 , wherein the execution of the instructions by the processing unit of the computing device further effect: transmitting the one or more command to the one or more controlled appliance.

10. The computer program product of claim 7 , wherein the plurality of temperature sensors is integrated to a molding installed at the interface of the ceiling and walls of the room.

11. A computing device for inferring via a neural network a two-dimensional temperature mapping of a room of a building, the computing device comprising:

at least one communication interface;

memory for storing a predictive model generated by a neural network training engine; and

a processing unit for:

receiving via the at least one communication interface a plurality of temperature measurements transmitted by a corresponding plurality of temperature sensors located at a corresponding plurality of locations on an interface of a ceiling and walls of the room;

executing a neural network inference engine using the predictive model for inferring outputs based on inputs, the inputs of the neural network inference engine comprising the plurality of temperature measurements, the outputs of the neural network inference engine consisting of a plurality of inferred temperature values at a corresponding plurality of zones, the plurality of zones being comprised in a two-dimensional grid mapped on a plane within the room; and

generating one or more command for controlling one or more appliance based at least on the plurality of inferred temperature values.

12. The computing device of claim 11 , wherein the plane within the room is a horizontal plane parallel to a floor of the room and located at a given height above the floor.

13. The computing device of claim 11 , wherein the predictive model comprises weights used by the neural network inference engine for inferring the outputs based on the inputs.

14. The computing device of claim 11 , wherein the inputs further comprise at least one of the following: a humidity level measurement in the room, a carbon dioxide level measurement in the room, an external temperature measurement outside the room, an external humidity level measurement outside the room, and a period of time.

15. The computing device of claim 11 , wherein the processing unit further transmits via the at least one communication interface the one or more command to the one or more controlled appliance.

16. The computing device of claim 11 , wherein the plurality of temperature sensors is integrated to a molding installed at the interface of the ceiling and walls of the room.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 23, 2019
From: GERVAIS, FRANCOIS
To: DISTECH CONTROLS INC.
Reel/Frame 048109/0924 →
Continuity (1)
Related Publication 20200200423A1 · Jun 25, 2020