IP Library Granted Patent US 11,461,913
Granted Patent B2
US 11,461,913 · App. 16/814,888 · Granted Oct 4, 2022

Distance measurement device

Inventors: Ritesh Narang (Santa Clarita, CA); William Bennett Hogue, Jr. (Simi Valley, CA); Clive Austin Towndrow (West Hills, CA)
Assignee: Panavision International, L.P.
G06T7/593G06F3/041H04N5/2251H04N5/2252H04N5/2258H04N5/2259H04N5/23212H04N5/23216H04N5/23293H04N5/247H04N5/44504H04N13/239G06F3/0488G06F3/04842G06F2203/04101H04N13/246H04N2013/0081H04N2213/001
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Quick Facts
Patent No.
US 11,461,913
App. No.
16/814,888
Granted
Oct 4, 2022
Kind
B2
Abstract

A system for determining a distance to a region of interest. The system may be used to adjust focus of a motion picture camera. The system may include a first camera configured to have a first field of view, and a second camera configured to have a second field of view that overlaps at least a portion of the first field of view. The system may include a processor configured to calculate a distance of the selected region of interest relative to a location by comparing a position of the selected region of interest in the first field of view with a position of the selected region of interest in the second field of view.

Claims (48)

1. A system for determining a distance to a region of interest comprising:

a first camera configured to have a first field of view;

a second camera configured to have a second field of view that overlaps at least a portion of the first field of view;

a control device configured to allow a user to select a region of interest in the at least a portion of the first field of view that overlaps the second field of view, wherein the control device is a display device configured to enable the user to select the region of interest; and

a processor configured to calculate a distance of the selected region of interest relative to a location by comparing a position of the selected region of interest in the first field of view with a position of the selected region of interest in the second field of view;

wherein the control device is configured to allow a user to select a plurality of regions of interest in the at least a portion of the first field of view that overlaps the second field of view; and

wherein the processor is configured to calculate a distance for each one of the plurality of selected regions of interest relative to a location by comparing a position of each one of the plurality of selected regions of interest in the first field of view with a position of a corresponding one of the plurality of selected regions of interest in the second field of view.

2. The system of claim 1 , further comprising a housing retaining the first camera and the second camera at a distance from each other.

3. The system of claim 2 , wherein the processor is configured to calculate the distance of the selected region of interest based on the distance between the first camera and the second camera.

4. The system of claim 2 , wherein the housing retains the first camera and the second camera in an orientation such that the second field of view overlaps the at least a portion of the first field of view.

5. The system of claim 1 , wherein the processor is further configured to identify the position of the selected region of interest in the second field of view by using an algorithm that correlates an appearance of the selected region of interest in the first field of view with an appearance of the selected region of interest in the second field of view.

6. The system of claim 1 , wherein the processor is further configured to track the position of the selected region of interest in the first field of view while the selected region of interest moves in the first field of view.

7. The system of claim 6 , wherein the processor is further configured to track the position of the selected region of interest in the second field of view by using an algorithm that correlates an appearance of the selected region of interest in the first field of view with an appearance of the selected region of interest in the second field of view.

8. The system of claim 7 , wherein the processor is configured to calculate the distance of the selected region of interest relative to the location in real time while the selected region of interest moves in the first field of view.

9. The system of claim 8 , wherein the display device comprises an overlay device configured to overlay the distance calculated by the processor in real time on an image produced by a third camera while the selected region of interest moves in the first field of view.

10. A system for determining a distance to a region of interest comprising:

a first camera configured to have a first field of view;

a second camera configured to have a second field of view that overlaps at least a portion of the first field of view;

a control device configured to allow a user to select a region of interest in the at least a portion of the first field of view that overlaps the second field of view, wherein the control device is a display device configured to enable the user to select the region of interest; and

a processor configured to calculate a distance of the selected region of interest relative to a location by comparing a position of the selected region of interest in the first field of view with a position of the selected region of interest in the second field of view;

wherein the first field of view includes a horizontal dimension and a vertical dimension, and the second field of view includes a horizontal dimension and a vertical dimension; and

wherein the processor is further configured to calculate the distance of the selected region of interest relative to the location by comparing the position of the selected region of interest in the horizontal dimension of the first field of view with the position of the selected region of interest in the horizontal dimension of the second field of view.

11. A system for determining a distance to a region of interest comprising:

a first camera configured to have a first field of view;

a second camera configured to have a second field of view that overlaps at least a portion of the first field of view;

a control device configured to allow a user to select a region of interest in the at least a portion of the first field of view that overlaps the second field of view, wherein the control device is a touch screen configured to display an image and allow the user to select the region of interest by touching a portion of the touch screen that displays the region of interest in the image;

a processor configured to calculate a distance of the selected region of interest relative to a location by comparing a position of the selected region of interest in the first field of view with a position of the selected region of interest in the second field of view; and

a third camera, wherein the location comprises an element of the third camera.

12. The system as recited in claim 11 , wherein the distance that is calculated is used to adjust a feature of the third camera.

13. A system for determining a distance to a region of interest comprising:

a first camera having a first field of view;

a second camera having a second field of view that overlaps a portion of the first field of view;

a user input that displays one or more regions of interest within one or both of the first and second fields of views, wherein the user input enables a user to select a region of interest from the displayed one or more regions of interest; and

a processor that calculates a distance of a selected region of interest relative to a location by comparing a position of the selected region of interest in the first field of view with a position of the selected region of interest in the second field of view;

wherein the processor calculates the distance of the selected region of interest relative to the location in real time while the selected region of interest moves.

14. A method for determining a distance to a region of interest comprising the steps of:

projecting a first field of view from a first camera and a second field of view from a second camera such that there is an overlapping portion of the first and second fields of view;

displaying one or more regions of interest in the overlapping portion on a display device;

selecting a region of interest from the one or more regions of interest displayed on the display device by user input; and

determining a distance of the selected region of interest relative to a location by identifying the position of the selected region of interest in the second field of view by correlating an appearance of the selected region of interest in the first field of view with an appearance of the selected region of interest in the second field of view, wherein the location comprises an element of a third camera.

15. A system for determining a distance to a region of interest comprising:

a first camera configured to have a first field of view;

a second camera configured to have a second field of view that overlaps at least a portion of the first field of view;

a control device configured to allow a user to select a region of interest in the at least a portion of the first field of view that overlaps the second field of view, wherein the control device is a display device configured to enable the user to select the region of interest;

a processor configured to calculate a distance of the selected region of interest relative to a location by comparing a position of the selected region of interest in the first field of view with a position of the selected region of interest in the second field of view;

wherein the processor is further configured to track the position of the selected region of interest in the first field of view while the selected region of interest moves in the first field of view;

wherein the processor is further configured to track the position of the selected region of interest in the second field of view by using an algorithm that correlates an appearance of the selected region of interest in the first field of view with an appearance of the selected region of interest in the second field of view; and

wherein the processor is further configured to calculate the distance of the selected region of interest relative to the location in real time while the selected region of interest moves in the first field of view.

Assignments (4)
ASSIGNMENT OF PATENT SECURITY AGREEMENT Recorded Apr 23, 2026
From: GREAT ROCK CAPITAL PARTNERS MANAGEMENT, LLC
To: SIENA LENDING GROUP LLC
Reel/Frame 075454/0461 →
SECURITY INTEREST Recorded May 2, 2025
From: PANAVISION INTERNATIONAL, L.P.
To: GREAT ROCK CAPITAL PARTNERS MANAGEMENT, LLC
Reel/Frame 071161/0916 →
SECURITY INTEREST Recorded Nov 5, 2020
From: PANAVISION INC.; PANAVISION INTERNATIONAL, L.P.; LIGHT IRON DIGITAL, LLC; PANAVISION EUROPE LIMITED; PANALUX LIMITED
To: ALTER DOMUS (US) LLC
Reel/Frame 054285/0199 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2020
From: PANAVISION FEDERAL SYSTEMS, LLC
To: PANAVISION INTERNATIONAL, L.P.
Reel/Frame 052074/0276 →
Continuity (3)
Continuation 15472116 · Mar 28, 2017
Continuation 14495862 · Sep 24, 2014
Related Publication 20200280672A1 · Sep 3, 2020