IP Library Granted Patent US 9,208,813
Granted Patent B2
US 9,208,813 · App. 14/260,258 · Granted Dec 8, 2015

Digital optical tape storage system

Inventor: Daniel Scott Rosen (Thousand Oaks, CA)
Assignee: Group 47, Inc.
G11B7/003G11B5/584G11B7/00736G11B15/1825G11B21/103G11B27/107
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Quick Facts
Patent No.
US 9,208,813
App. No.
14/260,258
Granted
Dec 8, 2015
Kind
B2
Abstract

Digital optical tape archival storage systems and methods are disclosed. A digital optical tape recorder may simultaneously write data and two or more guide tracks onto a digital optical tape recording medium. A digital optical taper reader may include a camera to capture a two-dimensional image of the digital optical tape recording medium, and an image processor to extract the data from the two-dimensional image.

Claims (63)

1. A digital optical tape archival storage system comprising:

a digital optical tape recorder configured to simultaneously write data and two or more guide tracks onto a digital optical tape recording medium, wherein the guide tracks include fiduciary markers at periodic intervals along a length of the digital optical tape recording medium; and

a digital optical tape reader comprising:

a camera to capture a two-dimensional image of the digital optical tape recording medium, the image including data and the two or more guide tracks, and

an image processor to extract the data from the two-dimensional image based on the two or more guide tracks, the image processor configured to:

estimate the positions of the fiducial markers in the two dimensional image captured by the camera,

define a local coordinate system based on the estimated positions of the fiducial markers, and

extract the data based on the defined coordinate system.

2. The digital optical tape archival storage system of claim 1 , wherein

the camera is configured to oversample the data such that a linear density of picture elements in the two-dimensional image captured by the camera is at least double a linear density of bits in the data recorded on the digital optical tape recording medium.

3. The digital optical tape archival storage system of claim 1 , wherein

the camera captures the two-dimensional image of the digital optical tape recording medium without aligning data bits recorded on the digital optical tape recording medium with detectors within the camera.

4. A digital optical tape archival storage system, comprising:

a digital optical tape recorder configured to simultaneously write data and two or more guide tracks onto a digital optical tape recording medium, wherein the digital optical tape recorder further comprises:

a spatial light modulator comprising a linear array of individually controllable elements to write a corresponding line of data bits onto the digital optical tape recording medium;

a guide track generator to generate the two or more guide tracks; and

a data combiner to combine data to be stored and the guide tracks such that each line of data bits written on the digital optical tape recording medium includes a block of data and a corresponding portion of each of the two or more guide tracks; and

a digital optical tape reader comprising:

a camera to capture a two-dimensional image of the digital optical tape recording medium, the image including data and the two or more guide tracks, and

an image processor to extract the data from the two-dimensional image based on the two or more guide tracks.

5. The digital optical tape archival storage system of claim 4 , wherein

the two or more guide tracks are configured to provide a visual indication of an intended direction of travel of the digital optical tape recording medium.

6. The digital optical tape archival storage system of claim 4 , wherein the two or more guide tracks are configured to provide a visual indication of a top edge and a bottom edge of the digital optical tape recording medium.

7. A method for archival data storage on digital optical tape recording media, comprising:

simultaneously writing data and two or more guide tracks onto a digital optical tape recording medium, wherein the guide tracks include fiduciary markers at periodic intervals along a length of the digital optical tape recording medium;

capturing a two-dimensional image of the digital optical tape recording medium with a camera, the two dimensional image including data and the two or more guide tracks; and

processing the two-dimensional image to extract the data based on the two or more guide tracks, processing the two-dimensional image to extract the data further comprising

estimating the positions of the fiducial markers in the two dimensional image captured by the camera,

defining a local coordinate system based on the estimated positions of the fiducial markers, and

extracting the data based on the defined coordinate system.

8. The method of claim 7 , wherein

the camera is configured to oversample the data such that a linear density of picture elements in the two-dimensional image captured by the camera is at least double a linear density of bits in the data recorded on the digital optical tape recording medium.

9. The method of claim 7 , wherein

the camera captures the two-dimensional image of the digital optical tape recording medium without aligning data bits recorded on the digital optical tape recording medium with detectors within the camera.

10. A method for archival data storage on digital optical tape recording media, comprising

simultaneously writing data and two or more guide tracks onto a digital optical tape recording medium;

capturing a two-dimensional image of the digital optical tape recording medium with a camera, the two dimensional image including data and the two or more guide tracks; and

processing the two-dimensional image to extract the data based on the two or more guide tracks,

wherein simultaneously writing data and two or more guide tracks onto a digital optical tape recording medium further comprises:

modulating a light beam using a spatial light modulator having a linear array of individually controllable elements to write a corresponding line of data bits onto the digital optical tape recording medium;

generating the two or more guide tracks; and

combining data to be stored and the guide tracks such that each line of data bits written on the digital optical tape recording medium includes a block of data and a corresponding portion of each of the two or more guide tracks.

11. The method of claim 10 , wherein

the two or more guide tracks are configured to provide a visual indication of an intended direction of travel of the digital optical tape recording medium.

12. The method of claim 10 , wherein the two or more guide tracks are configured to provide a visual indication of a top edge and a bottom edge of the digital optical tape recording medium.

13. A digital optical tape reader comprising:

a camera to capture a two-dimensional image of a digital optical tape recording medium, the two-dimensional image including data and two or more guide tracks, the guide tracks including fiduciary markers at periodic intervals along a length of the digital optical tape recording medium; and

an image processor to extract the data from the two-dimensional image based on the two or more guide tracks, the image processor configured to

estimate the positions of the fiducial markers in the two dimensional image captured by the camera,

define a local coordinate system based on the estimated positions of the fiducial markers, and

extract the data based on the defined coordinate system.

14. The digital optical tape reader of claim 13 , wherein the camera captures the two-dimensional image of the digital optical tape recording medium without aligning data bits recorded on the digital optical tape recording medium with detectors within the camera.

15. The digital optical tape reader of claim 13 , wherein

the camera is configured to oversample the data such that a linear density of picture elements in the two-dimensional image captured by the camera is at least double a linear density of bits in the data recorded on the digital optical tape recording medium.

16. A method for reading data stored on digital optical tape recording media, comprising:

capturing a two-dimensional image of the digital optical tape recording medium with a camera, the two dimensional image including data and two or more guide tracks, the guide tracks including fiduciary markers at periodic intervals along a length of the digital optical tape recording medium; and

processing the two-dimensional image to extract the data based on the two or more guide tracks, wherein processing the two-dimensional image to extract the data further comprises:

estimating the positions of the fiducial markers in the two dimensional image captured by the camera,

defining a local coordinate system based on the estimated positions of the fiducial markers, and

extracting the data based on the defined coordinate system.

17. The method of claim 16 , wherein the camera captures the two-dimensional image of the digital optical tape recording medium without aligning data bits recorded on the digital optical tape recording medium with detectors within the camera.

18. The method of claim 16 , wherein

the camera is configured to oversample the data such that a linear density of picture elements in the two-dimensional image captured by the camera is at least double a linear density of bits in the data recorded on the digital optical tape recording medium.

Assignments (2)
CHANGE OF NAME Recorded May 14, 2026
From: GROUP 47, INC.
To: INDELLIUM STORAGE, INC.
Reel/Frame 075592/0429 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2015
From: ROSEN, DANIEL SCOTT
To: GROUP 47, INC.
Reel/Frame 036341/0848 →
Continuity (2)
Provisional Application 61815650 · Apr 24, 2013
Related Publication 20140321255A1 · Oct 30, 2014