IP Library › Granted Patent US 9,852,486
Granted Patent B2
US 9,852,486 · App. 15/419,159 · Granted Dec 26, 2017

Utility monitoring device, system and method

Inventor: Geoffrey David Vincent Salter (Kingston, CA)
Assignee: Aztech Associates Inc.
G06Q50/06G06Q30/0283
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Quick Facts
Patent No.
US 9,852,486
App. No.
15/419,159
Granted
Dec 26, 2017
Kind
B2
Abstract

A monitoring device, system and method are provided for in-home/on-premises monitoring of usage of utilities, such as electricity and other services. The monitoring device receives information from a smart meter, and displays usage through a display, illuminating an area using a color indicative of the current cost of consumption, and varying the illuminated area at a rate indicative of a rate of consumption or other metric, the varying of the illuminated area simulating movement in the display. The display provides a consumer with “at a glance” visual information on current usage. Optionally a digital display screen provides detailed alphanumeric and graphical information, through a number of selectable display modes. One or more devices may be networked, and interface directly or indirectly with a transceiver of a smart metering system, or a retrofit transceiver for a conventional meter. Monitoring of other utilities and services may alternatively or additionally be provided.

Claims (65)

1. A device comprising:

a display comprising a display area;

a receiver for receiving metric data relating to a plurality of utility metrics, each utility metric relating to a predetermined utility and communicating said metric data to a controller of the device;

the controller for controlling the generation and rendering of a visual element upon the display to a user relating to two utility metrics of the plurality of utility metrics; wherein

a first aspect of the visual element is established in dependence upon a first utility metric of the two utility metrics of the plurality of utility metrics and is one of a group consisting of: a color, a dimension, a temporal variation, a direction of the visual element relative to the display, and a motion of the visual element relative to the display;

a second aspect of the visual element is established in dependence upon a second utility metric of the two utility metrics of the plurality of utility metrics and is another one of the group consisting of: a color, a dimension, a temporal variation, a direction of the visual element relative to the display, and a motion of the visual element relative to the display other than the one associated with the first aspect; and

the visual element is not alphanumerically based or a form of graph.

2. The device according to claim 1 , wherein

the controller further controls the generation and rendering of the visual element upon the display to the user in dependence upon a third utility metric of the plurality of utility metrics; and

a third aspect of the visual element is established in dependence upon the third utility metric of the plurality of utility metrics and is further one of the group consisting of: a color, a dimension, a temporal variation, a direction of the visual element relative to the display, and a motion of the visual element relative to the display other than those associated with the first aspect and second aspect.

3. The device according to claim 1 , wherein

the device forms part of a network operatin according to a predtermined standard comprising at least a first metering system of a plurality of metering systems measuring the plurality of utility metrics and generating the metric data.

4. The device according to claim 1 , wherein

the device forms part of a network operating according to a predetermined standard comprising a plurality pf metering systems each measuring a predetermined subset of the plurality of utility metrics and generating metric data relating to that predetermined subset of utility metrics.

5. The device according to claim 1 , wherein

the device is connected to a network operating according to a predetermined standard comprising a metering ssytem measuring a subset of the plurality of utility metrics and generating the metric data relating to the subset of the plurality of utility metrics and a remote server providing the metric data relating to the remainder of the plurality of utility metrics.

6. The device according to claim 1 , wherein

the first aspect of the visual element is established in dependence upon the first utility metric of the two utility metrics of the plurality of utility metrics and a predetermind threshold value for the first utility metric; and

the second aspect of the visual element is established in dependence upon the second utility metric of the two utility metrics of the plurality of utility metrics and a predetermined threshold value fo the second utility metric.

7. The device according to claim 1 , wherein

the first aspect of the visual element is established in dependence upon the first utility metric of the two utility metrics of the plurality of utility metrics and a predetermined threshold value for the first utility metric; and

the second aspect of the visual element is established in dependence upon the second utility metric of the two utility metrics of the plurality of utility metrics and a cost associated with the predetermined utility to which the second utility metric of the utility metrics of the plurality of utility metrics relates.

8. A method of rendering utility metric data to a user comprising:

receiving with a receiver metric data relating to a plurality of utility metrics, each utility metric relating to a predetermined utility;

controlling with a controller associated with a display the generation and rendering of a visual element upon the display to a user relating to two utility metrics of the plurality of utility metrics; wherein

a first aspect of the visual element is established in dependence upon a first utility metric of the two utility metrics of the plurality of utility metrics and is one of a group consisting of: a color, a dimension, a temporal variation, a direction of the visual element relative to the display, and a motion of the visual element relative to the display;

a second aspect of the visual element is established in dependence upon a second utility metric of the two utility metrics of the plurality of utility metrics and is another one of the group consisting of: a color, a dimension, a temporal variation, a direction of the visual element relative to the display, and a motion of the visual element relative to the display other than the one associated with the first aspect; and

the visual element is not alphanumerically based or a form of graph.

9. The method according to claim 8 , wherein

the controller further controls the generation and rendering of the visual element upon the display to the user in dependence upon a third utility metric of the plurality of utility metrics; and

a third aspect of the visual element is established in dependence upon the third utility metric of the plurality of utility metrics and is further one of the group consisting of: a color, a dimension, a temporal variation, a direction of the visual element relative to the display, and a motion of the visual element relative to the display other than those associated with the first aspect and second aspect.

10. The method according to claim 8 , whererin

the receiver receives the metric data from a network operating to a predetermined standard comprising at least a first metering system of a plurality of metering systems measuring the plurality of utility metrics and generating the metric data.

11. The method according to claim 8 , wherein

the receiver receiver the metric data from a network operating according to a predetermined standard comprising a plurality of metering systems each measuring a predetermined subset of the plurality of utility metrics and generating metric data relating to that predetermined subset of the plurality of utility metrics.

12. The method according to claim 8 , wherein

the reciever receives the metric data from a network operating according to a predetermined standard comprising a metering system measuring a subset of the plurality of utility metrics and generating the metric data relating to the subset of the plurality of utility metrics and a remote server providing the metric data relating to the remainder of the plurality of utility metrics.

13. The metho according to claim 8 , wherein

the first aspect of the visual element is established if dependence upon the first utility metric of the two utlity metrics of the plurality of utility metrics and a predertermined threshold value for the first utility metric; and

the second aspect of the visual element is established om dependence upon the second utility metric of the two utility metrics if the plurality of utility metrics and a predetermined threshold value for the second utility metric.

14. The method according to claim 8 , wherein

the first aspect of the visual element is established om dependence upon the first utility metric of the two utility metrics of the plurality of utility metrics and a predetermined threshold value for the first utility metric; and

the second aspect of the visual element is established in dependence upon the second utility metric of the two utility metrics of the plurality of utility metrics and a cost associated with the predetermined utility to which the second utility metric of the two utility metrics of the plurality of utility metrics relates.

15. A non-volatile non-transitory memory storing computer readable instructions for execution by a microprocessor, the computer readable instructions relating to a method of rendering utility metric data to a user comprising:

receiving with a receiver coupled to the microprocessor metric data relating to a plurality of utility metrics, each utility metric relating to a predetermined utility;

controlling with the microprocessor associated with a display the generation and rendering of a visual element upon the display to a user relating to two utility metrics of the plurality of utility metrics; wherein

a first aspect of the visual element is established in dependence upon a first utility metric of the two utility metrics of the plurality of utility metrics and is one of a group consisting of: a color, a dimension, a temporal variation, a direction of the visual element relative to the display, and a motion of the visual element relative to the display;

a second aspect of the visual element is established in dependence upon a second utility metric of the two utility metrics of the plurality of utility metrics and is another one of the group consisting of: a color, a dimension, a temporal variation, a direction of the visual element relative to the display, and a motion of the visual element relative to the display other than the one associated with the first aspect; and

the visual element is not alphanumerically based or a form of graph.

16. The non-volatile non-transitory memory according to claim 15 , wherein

the microprocessor further controls the generation and rendering of the visual element upon the display to the user in dependence upon a third utility metric of the plurality of utility metrics; and

a third aspect of the visual element is established in dependence upon the third utility metric of the plurality of utility metrics and is further one of the group consisting of: a color, a dimension, a temporal variation, a direction of the visual element relative to the display, and a motion of the visual element relative to the display other than those associated with the first aspect and second aspect.

17. The non-volatile non-transitory memory according to claim 15 , wherein

either

the receiver receives the metric data from a network operating according to a predetermined standard comprising at least a first metering system of a plurality of metering systems measuring the plurality of utility metrics and generating the metric data;

or

the receiver receives the metric data from a network operating according to a predetermined standard comprising a plurality of metering systems each measuring a predetermined subset of the plurality of utility metrics and generating metric data relating to that predetermined subset of the plurality of utility metrics.

18. The non-volatile non-transitory memory according to claim 15 , wherein

the receiver receives the metric data from a network operating according to a predetermined standard comprising a metering system measuring a subset of the plurality of utility metrics and generating the metric data relating to the subset of the plurality of utility metrics and a remote server providing the metric data relating to the remainder of the plurality of utility metrics.

19. The non-volatile non-transitory memory according to claim 15 , wherein

the first aspect of the visual element is established in dependence upon the first utility metric of the two utility metrics of the plurality of utility metrics and a predetermined threshold value for the first utility metric; and

the second aspect of the visual element is established in dependence upon the second utility metric of the two utility metrics of the plurality of utility metrics and a predetermined threshold value for the second utility metric.

20. The non-volatile non-transitory memory according to claim 15 , wherein

the first aspect of the visual element is established in dependence upon the first utility metric of the two utility metrics of the plurality of utility metrics and a predetermined threshold value for the first utility metric; and

the second aspect of the visual element is established in dependence upon the second utility metric of the two utility metrics of the plurality of utility metrics and a cost associated with the predetermined utility to which the second utility metric of the two utility metrics of the plurality of utility metrics relates.

Continuity (5)
Continuation In Part 14674402 · Mar 31, 2015
Continuation 13660502 · Oct 25, 2012
Continuation 12525415
Provisional Application 60887985 · Feb 2, 2007
Related Publication 20170140482A1 · May 18, 2017