IP Library Patent Application 18493084
Patent Application
App. No. 18/493,084

THERMOSTAT FOR CONVEYING EXPECTED THERMAL RESPONSES TO USERS

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Quick Facts
Patent No.
US None
App. No.
18/493,084
Abstract

A method and apparatus for summarizing and conveying expected thermal responses is described. Expected thermal responses of a room or an entire structure are calculated based on thermostat setpoints. The expected thermal responses are summarized into an expected thermal response visualization and displayed to a user for easy understanding of current, and future, temperature expectations before or as a room or entire structure is heated or cooled.

Claims (74)

1 . An apparatus for summarizing and conveying expected thermal responses to users, comprising:

a graphical user interface;

a temperature sensor;

a non-transient memory for storing processor-executable instructions and one or more setpoints; and

a processor, coupled to the graphical user interface, the temperature sensor and the non-transient memory for executing the processor-executable instructions that causes the processor to:

store a first setpoint in the memory, the first setpoint comprising a start time and a desired setpoint temperature;

determine an ambient temperature of a room based on one or more signals from the temperature sensor;

calculate an expected thermal response vs. time, the expected thermal response comprising the ambient temperature, the desired setpoint temperature and a number of predicted temperatures therebetween;

summarize the expected thermal response into an expected thermal response visualization; and

cause the expected thermal response visualization to be displayed on the graphical user interface.

2 . The apparatus of claim 1 , wherein the expected thermal response visualization comprises a wave curve of expected room temperatures vs. time as an HVAC system begins a heating or cooling cycle based on the first setpoint.

3 . The apparatus of claim 2 , wherein the wave curve is formatted to display the wave curve using substantially an entire width of the graphical user interface, displaying the current ambient temperature at a far left side of the graphical user interface and displaying the desired setpoint temperature on a right side of the graphical user interface.

4 . The apparatus of claim 2 , comprising further processor-executable instructions that causes the processor to:

determine an expected energy consumption rate of the HVAC system during the heating or cooling cycle;

shade an area of the graphical user interface in a first color representative of the expected energy consumption rate.

5 . The apparatus of claim 1 , further comprising further processor-executable instructions that causes the processor to:

record sets of temperature readings from the temperature probe during respective heating or cooling sequences, each of the sets further comprising a starting ambient temperature of the room and a respective desired setpoint temperature;

store the sets in the memory; and

determine that a heating or cooling cycle will commence based on the first setpoint;

wherein the processor-executable instructions that cause the processor to calculate the expected thermal response comprises instructions that causes the processor to:

identify a first set stored in the memory having a closest match between the starting ambient temperature and the desired setpoint temperature; and

generate the expected thermal response visualization based on the temperature readings stored in association with the first set.

6 . The apparatus of claim 4 , wherein the processor-executable instructions that cause the processor to calculate the expected energy consumption rate comprises instructions that causes the processor to:

determine a plurality of expected energy consumption rates of the HVAC system as the HVAC system heats and cools the room, each of the expected energy consumption rates determined at least in part on the ambient temperature at the start of a heating or cooling cycle and/or a particular desired setpoint temperature;

assign a color to each expected energy consumption rate;

store the expected energy consumption rates in the memory in association with its assigned color, and a respective starting ambient temperature of the room and a respective particular desired setpoint temperature of the room;

determine that a heating or cooling cycle will commence based on the first setpoint;

identify a first expected energy consumption rate stored in the memory having a starting ambient temperature and desired setpoint temperature that most closely matches the ambient temperature and the desired setpoint temperature of the first setpoint; and

shade the area below the expected thermal response visualization with the color assigned to the first expected energy consumption rate.

7 . The apparatus of claim 1 , further comprising a network interface and comprising further processor-executable instructions that causes the processor to:

initiate a cooling sequence with HVAC equipment coupled to the apparatus based on a current temperature provided by the temperature sensor and one of the one or more setpoints; and

in response to initiating the cooling sequence, send a blind control signal to the network interface, the blind control signal for causing motorized blinds, coupled to the apparatus via the network interface, to close.

8 . The apparatus of claim 7 , wherein the processor-executable instructions that cause the processor to send a blind control signal comprises instructions that causes the processor to:

send the blind control signal only when the processor determines that the apparatus is operating in an economy mode.

9 . The apparatus of claim 1 , further further processor-executable instructions that causes the processor to:

determine that a cooling sequence or a heating sequence will occur; and

in response to determining that a cooling sequence or a heating sequence will occur, cause a message to be displayed on the graphical user interface asking a user to close any open doors or windows for faster and more efficient heating or cooling.

10 . The apparatus of claim 1 , comprising further processor-executable instructions that causes the processor to:

modify the expected thermal response based on whether the apparatus is operating in an economy mode of operation or not.

11 . A method, performed by a thermostat, for summarizing and conveying expected thermal responses to users, comprising:

storing a first setpoint, the first setpoint comprising a start time and a desired setpoint temperature;

determining an ambient temperature of a room based on one or more signals from the temperature sensor;

calculating an expected thermal response vs. time, the expected thermal response comprising the ambient temperature, the desired setpoint temperature and a number of predicted temperatures therebetween;

summarizing the expected thermal response into an expected thermal response visualization; and

causing the expected thermal response visualization to be displayed on the graphical user interface.

12 . The method of claim 11 , wherein the expected thermal response visualization comprises a wave curve of expected room temperatures vs. time as an HVAC system begins a heating or cooling cycle based on the first setpoint.

13 . The method of claim 12 , wherein the wave curve is formatted to display the wave curve using substantially an entire width of the graphical user interface, displaying the current ambient temperature at a far left side of the graphical user interface and displaying the desired setpoint temperature on a right side of the graphical user interface.

14 . The method of claim 12 , further comprising:

determining an expected energy consumption rate of the HVAC system during the heating or cooling cycle;

shading an area of the graphical user interface in a first color representative of the expected energy consumption rate.

15 . The method of claim 11 , further comprising:

recording sets of temperature readings from the temperature probe during respective heating or cooling sequences, each of the sets further comprising a starting ambient temperature of the room and a respective desired setpoint temperature;

storing the sets in a memory coupled to the processor; and

determining that a heating or cooling cycle will commence based on the first setpoint;

wherein calculating the expected thermal response comprises:

identifying a first set stored in the memory having a closest match between the starting ambient temperature and the desired setpoint temperature; and

generating the expected thermal response visualization based on the temperature readings stored in association with the first set.

16 . The method of claim 14 , wherein calculating the expected energy consumption rate comprises:

determining a plurality of expected energy consumption rates of the HVAC system as the HVAC system heats and cools the room, each of the expected energy consumption rates determined at least in part on the ambient temperature at the start of a heating or cooling cycle and/or a particular desired setpoint temperature;

assigning a color to each expected energy consumption rate;

storing the expected energy consumption rates in the memory in association with its assigned color, and a respective starting ambient temperature of the room and a respective particular desired setpoint temperature of the room;

determining that a heating or cooling cycle will commence based on the first setpoint;

identifying a first expected energy consumption rate stored in the memory having a starting ambient temperature and desired setpoint temperature that most closely matches the ambient temperature and the desired setpoint temperature of the first setpoint; and

shading the area below the expected thermal response visualization with the color assigned to the first expected energy consumption rate.

17 . The method of claim 11 , further comprising:

initiating a cooling sequence with HVAC equipment coupled to the thermostat based on a current temperature provided by a temperature sensor of the thermostat and one of the one or more setpoints; and

in response to initiating the cooling sequence, sending a blind control signal to a network interface of the thermostat, the blind control signal for causing motorized blinds, coupled to the apparatus via the network interface, to close.

18 . The method of claim 17 , wherein sending a blind control signal comprises:

sending the blind control signal only when the thermostat is operating in an economy mode.

19 . The method of claim 11 , further comprising:

determining that a cooling sequence or a heating sequence will occur; and

in response to determining that a cooling sequence or a heating sequence will occur, causing a message to be displayed on the graphical user interface asking a user to close any open doors or windows for faster and more efficient heating or cooling.

20 . The method of claim 11 , further comprising:

modifying the expected thermal response based on whether the thermostat is operating in an economy mode of operation or not.

Assignments (3)
SECURITY INTEREST Recorded May 15, 2024
From: UNIVERSAL ELECTRONICS INC.
To: U.S. BANK NATIONAL ASSOCIATION
Reel/Frame 067417/0402 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2023
From: XU, REX; TANAKA, DAI
To: RCS TECHNOLOGY, LLC
Reel/Frame 065326/0010 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2023
From: RCS TECHNOLOGY, LLC
To: UNIVERSAL ELECTRONICS INC.
Reel/Frame 065326/0183 →