IP Library Granted Patent US 8,989,909
Granted Patent B2
US 8,989,909 · App. 14/231,235 · Granted Mar 24, 2015

Graphical user interface for the multi-dimensional representation of energy control

Inventors: Daniel Park (Beaverton, OR); James Owen (Vancouver, WA); Carl Mansfield (Camas, WA); David Elrod (Beaverton, OR)
Assignee: Sharp Laboratories of America, Inc.
G05B15/02G06Q50/06G06F3/04847G06F3/0484G06T11/001F24F2011/0094
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Quick Facts
Patent No.
US 8,989,909
App. No.
14/231,235
Granted
Mar 24, 2015
Kind
B2
Abstract

A multi-dimensional energy control system is provided with an energy management software application that organizes the consumption of energy by a device as an n-dimensional energy space, where n is an integer greater than 2, and each axis in the energy space represents an energy consumption characteristic. The energy management application generates instructions for a device in response to calculating a compromise operating point in the energy space. A user interface (UI) connected to the energy management application has a display to receive a graphical representation of the energy space and compromise operating point, and an input to receive user commands for moving the represented compromise operating point in the represented energy space. The energy management application calculates the compromise operating point in the energy space to match the displayed compromise operating point.

Claims (22)

1. A multi-dimensional energy control graphical user interface (GUI) comprising:

a processor;

a non-transitory memory;

a display;

an energy management GUI application enabled as a sequence of software instructions stored in the non-transitory memory and executed by the processor;

wherein the energy management GUI application presents a graphical representation of energy consumption by a device as a n-dimensional energy space polygon, where n is an integer greater than 2, and each vertex of the polygon represents an energy consumption characteristic, wherein the energy management GUI application presents a compromise operating point on the display, receives user commands for moving the represented compromise operating point in the represented energy space, and calculates the compromise operating point in the energy space to match the displayed compromise operating point.

2. The GUI of claim 1 wherein the energy management GUI application represents the energy consumption by the device on the display as a triangle, where triangle vertices represent the energy consumption characteristics of user comfort, user economy, and ecology.

3. The GUI of claim 1 wherein the energy management GUI application presents the energy space on the display as a two-dimensional polygon with n vertices, where each vertex is associated with a corresponding energy consumption characteristic.

4. The GUI of claim 3 wherein the energy management GUI application organizes the energy consumption by the device as a three-dimensional energy space, and represents the energy space on the display as a triangle.

5. The GUI of claim 4 wherein the energy management GUI application presents each triangle vertex on the display as a color.

6. The GUI of claim 5 wherein the energy management GUI application represents the compromise operating point on the display as a blend of triangle vertices colors.

7. The GUI of claim 4 wherein the energy management GUI application presents a default triangle on the display with initial condition settings for each vertex, and a set of menu-driven prompts to accept user commands for modifying the initial conditions settings; wherein the energy management GUI application modifies weighting of energy consumption characteristics of a default initial condition energy space, creating a sub-energy space inside the default initial condition energy space, and presents a user-customized triangle on the display with each vertex located inside the default triangle.

8. The GUI of claim 4 wherein the energy management GUI application organizes the energy consumption for a plurality of devices in a corresponding plurality of three-dimensional energy spaces and presents each energy space on the display with a corresponding triangle.

9. The GUI of claim 1 wherein the energy consumption characteristics are selected from a group consisting of user comfort, user economy, ecology, community need, and device lifetime.

10. The GUI of claim 1 wherein the energy management GUI application presents the energy space on the display as n selectively variable and interdependent indicators, where a change in a first indicator causes a change in a second indicator.

11. The GUI of claim 1 wherein the energy management GUI application presents the energy space on the display as a two-dimensional polygon with n vertices, where each vertex is associated with a corresponding energy consumption characteristic, and wherein the display additional represents each vertex as a selectively variable and interdependent indicator.

12. The GUI of claim 1 wherein the energy management GUI application accepts inputs selected from a group consisting of time, time varying user preferences, external environmental conditions, device feedback, and energy costs, and modifies weighting of energy consumption characteristics of the energy space, and presents a triangle on the display where a relationship between vertices changes in response to modifications in the weighting of the energy characteristics of the energy space.

13. The GUI of claim 12 wherein the energy management GUI application maintains a constant compromise operating point in response to modifications in the weighting of the energy characteristics of the energy space, and presents a constant compromise operating point on the display despite changes in the relationship between the triangle vertices.

14. The GUI of claim 12 wherein the energy management GUI application maintains a constant first energy characteristic value of the energy space despite modifications in the weighting of the energy characteristics of the energy space.

15. The GUI of claim 1 wherein the energy management GUI application presents a sequence of menu-driven user prompts on the display for defining components for each energy characteristics of the energy space, and the weighting of each defined component.

16. The GUI of claim 1 wherein the energy management GUI application presents the energy space on the display as a three-dimensional polygon with n vertices, where each vertex is associated with a corresponding energy consumption characteristic.

17. The GUI of claim 1 wherein the energy management GUI application presents the polygon on the display in a perspective view with at least one representation of a curved line connecting two vertices.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2018
From: SHARP ELECTRONICS CORPORATION
To: NANTENERGY, INC.
Reel/Frame 047789/0215 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 27, 2018
From: SHARP KABUSHIKI KAISHA (SHARP CORPORATION)
To: SHARP ELECTRONICS CORPORATION
Reel/Frame 047596/0480 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 2, 2015
From: SHARP LABORATORIES OF AMERICA, INC.
To: SHARP KABUSHIKI KAISHA
Reel/Frame 036478/0023 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2014
From: PARK, DANIEL; OWEN, JAMES; MANSFIELD, CARL; ELROD, DAVID
To: SHARP LABORATORIES OF AMERICA, INC.
Reel/Frame 032566/0416 →
Continuity (2)
Division 13178723 · Jul 8, 2011
Related Publication 20140214228A1 · Jul 31, 2014