IP Library Granted Patent US 11,162,703
Granted Patent B2
US 11,162,703 · App. 15/681,306 · Granted Nov 2, 2021

System and method for characterization of retrofit opportunities in building using data from communicating thermostats

Inventors: Michael Zeifman (Sharon, MA); Amine Lazrak (Boston, MA)
Assignee: FRAUNHOFER USA, INC.
F24F11/63G01R21/006G05B19/042G05D23/1917G06F30/13G06Q10/063G06Q50/06F24F2110/10F24F2140/60G05B2219/2614G06F2119/06
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Quick Facts
Patent No.
US 11,162,703
App. No.
15/681,306
Granted
Nov 2, 2021
Kind
B2
Abstract

Systems and methods for characterization of retrofit opportunities are described. The methods may comprise computing, using at least one computing device disposed remote from a building and based at least in part on heating, ventilation and air conditioning (HVAC) runtime data associated with the building, one or more thermal characteristics of the building. In some embodiments, a model-predicted indoor temperature may be fitted against thermal data measured by a thermostat at the building. The thermal characteristic of the building may comprise a thermal insulation, an air leakage rate and/or an HVAC efficiency. The method may be used to determine, using the at least one computing device, suitability of the building for a retrofit opportunity to improve energy efficiency of the building. Determining the suitability may comprise evaluating the one or more thermal characteristics. The HVAC runtime data may be computed based on data received from a thermostat or a meter, such as an electric or a gas meter.

Claims (48)

1. A method comprising:

receiving, using at least one computing device disposed remote from a building, measured thermal data from a thermostat disposed at the building, the measured thermal data comprising first indoor temperature data indicative of a temperature inside the building;

computing, based on a mathematical model and using the at least one computing device, second indoor temperature data indicative of a temperature inside the building, the mathematical model including a value indicative of a temperature of one or more walls of the building over;

down-selecting, using the at least one computing device, the first indoor temperature data by varying a time period for at least two data points of the first indoor temperature, such that down-selected first indoor temperature corresponds to a previously recorded actual resource consumption profile;

computing, using the at least one computing device, confidence intervals for one or more thermal characteristics of the building comprising at least one selected from the group consisting of a value indicative of a thermal insulation, a value indicative of an air leakage rate, and a value indicative of a heating, ventilation and air conditioning (HVAC) efficiency;

executing, using the at least one computing device, a computer model utilizing a curve-fitting protocol to correlate the second indoor temperature data with the down-selected first indoor temperature data and to calculate an estimated one or more thermal characteristics of the building, wherein the computer model constrains a search space for possible values of the estimated one or more thermal characteristics of the building in accordance with the confidence intervals;

simulating, using the at least one computing device, a set of retrofit opportunity scenarios to determine suitability of the building for a retrofit opportunity to improve energy efficiency of the building, wherein for each retrofit opportunity scenario: the at least one computing device calculates one or more simulated thermal characteristics of the building and compares the simulated one or more thermal characteristics of the building with the estimated one or more thermal characteristics of the building; and

transmitting, using the at least one computing device, an electronic notification to an electronic device associated with the building, the notification comprising at least one recommendation corresponding to at least one simulated retrofit opportunity.

2. The method of claim 1 , wherein down-selecting the first indoor temperature data to one or more periods of low heat transfer comprises down-selecting the first indoor temperature data to one or more nights.

3. The method of claim 1 , wherein determining suitability of the retrofit opportunity comprises:

simulating, using the at least one computing device, an effect of performance of a retrofit; and

estimating, based at least in part on the simulating, one or more second thermal characteristics of the building that would result from the performance of the retrofit at the building.

4. The method of claim 1 , wherein determining suitability of the retrofit opportunity comprises simulating, using the at least one computing device, an effect of performance of one selected from the group consisting of an upgrade of building thermal insulation, a sealing of air leaks and a replacement of an HVAC equipment.

5. The method of claim 1 , wherein:

computing the second indoor temperature data indicative of a temperature inside the building comprises deriving a closed-form solution of the mathematical model; and

fitting the second indoor temperature data with the down-selected first indoor temperature data comprises fitting the closed-form solution of the mathematical model with the down-selected first indoor temperature data.

6. The method of claim 1 , further comprising:

computing, using the at least one computing device, the value indicative of the air leakage rate, wherein computing the value comprises computing a value indicative of a convective heat resistance.

7. The method of claim 1 , further comprising:

computing, using the at least one computing device, the value indicative of the air leakage rate, wherein computing the value comprises correlating one among the one or more thermal characteristics of the building with wind data.

8. The method of claim 1 , wherein:

receiving, using the at least one computing device disposed remote from a building, measured thermal data from a thermostat disposed at the building comprises receiving HVAC runtime data from the thermostat, and

the method further comprises computing, based on the mathematical model and using the at least one computing device, the value indicative of the HVAC efficiency using the HVAC runtime data.

9. The method of claim 1 , wherein determining, using the at least one computing device, suitability of the building for a retrofit opportunity to improve energy efficiency of the building comprises:

comparing the one or more thermal characteristics with a predefined threshold value; and

determining that the retrofit opportunity to improve energy efficiency of the building is suitable if the one or more thermal characteristics are greater than the predefined threshold value.

10. The method of claim 1 , further comprising:

computing, using the at least one computing device, heat gains or losses using the mathematical model and based on the thermal data and the confidence intervals for the one or more thermal characteristics;

training, using the at least one computing device, a machine learning system using the computed heat gains or losses; and

performing, using the at least one computing device, a prediction of future heat gains or losses based on the trained machine learning system.

11. The method of claim 1 , further comprising constraining the one or more thermal characteristics to the respective confidence intervals, wherein evaluating the confidence intervals for the one or more thermal characteristics comprises evaluating the one or more constrained thermal characteristics.

12. The method of claim 1 , wherein computing the confidence intervals comprises performing the correlation using a solution of the mathematical model computed over the one or more periods of low heat transfer.

13. An apparatus comprising:

at least one processor; and

at least one storage medium having encoded thereon executable instructions that, when executed by the at least one processor, cause the at least one processor to perform a method comprising:

receiving measured thermal data from a thermostat disposed at the building, the measured thermal data comprising first indoor temperature data indicative of a temperature inside the building;

computing, based on a mathematical model, second indoor temperature data indicative of a temperature inside the building, the mathematical model including a value indicative of a temperature of one or more walls of the building over time;

down-selecting the first indoor temperature data by varying a time period for at least two data points of the first indoor temperature, such that down-selected first indoor temperature corresponds to a previously recorded actual resource consumption profile;

computing confidence intervals for one or more thermal characteristics of the building comprising at least one selected from the group consisting of a value indicative of a thermal insulation, a value indicative of an air leakage rate, and a value indicative of a heating, ventilation and air conditioning (HVAC) efficiency;

executing a computer model utilizing a curve-fitting protocol to correlate the second indoor temperature data with the down-selected first indoor temperature data with the down-selected first indoor temperature data and to calculate an estimated one or more thermal characteristics of the building, wherein the computer model constrains a search space for possible values of the estimated one or more thermal characteristics of the building in accordance with the confidence intervals;

simulating a set of retrofit opportunity scenarios to determine suitability of the building for a retrofit opportunity to improve energy efficiency of the building, wherein for each retrofit opportunity scenario:

the at least one processor calculates one or more simulated thermal characteristics of the building and compares the simulated one or more thermal characteristics of the building with the estimated one or more thermal characteristics of the building; and

transmitting an electronic notification to an electronic device associated with the building, the notification comprising at least one recommendation corresponding to at least one simulated retrofit opportunity.

14. The apparatus of claim 13 , wherein down-selecting the first indoor temperature data to one or more periods of low heat transfer comprises down-selecting the first indoor temperature data to one or more nights.

15. The apparatus of claim 13 , wherein computing the second indoor temperature data associated with the building comprises deriving a closed-form solution of the mathematical model, and wherein fitting the second indoor temperature data with the down-selected first indoor temperature data comprises fitting the closed-form solution of the mathematical model with the down-selected first indoor temperature data.

16. The apparatus of claim 13 , wherein computing the value indicative of the air leakage rate comprises computing a value indicative of a convective heat resistance.

17. The apparatus of claim 13 , wherein determining suitability of the retrofit opportunity comprises simulating an effect of performance of a retrofit, and estimating, based at least in part on the simulating, one or more second thermal characteristics of the building that would result from the performance of the retrofit at the building.

18. The apparatus of claim 13 , wherein determining suitability of the retrofit opportunity comprises simulating an effect of performance of one selected from the group consisting of an upgrade of building thermal insulation, a sealing of air leaks and a replacement of an HVAC equipment.

Assignments (2)
CONFIRMATORY LICENSE Recorded Oct 18, 2021
From: FRAUNHOFER CENTER /MANUFACTURING INNOV
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 058265/0430 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2018
From: ZEIFMAN, MICHAEL; LAZRAK, AMINE
To: FRAUNHOFER USA, INC.
Reel/Frame 044812/0214 →
Continuity (3)
Provisional Application 62377095 · Aug 19, 2016
Provisional Application 62377110 · Aug 19, 2016
Related Publication 20180068034A1 · Mar 8, 2018
Cited By (1)
US 12,222,120