IP Library Patent Application 14506377
Patent Application
App. No. 14/506,377

DURABLE COMPACT MULTISENSOR OBSERVATION DEVICES

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Quick Facts
Patent No.
US None
App. No.
14/506,377
Abstract

Systems having throwable devices with thermal imaging capabilities may be provided for observing a potentially hazardous environment with possible human or environmental threats. A system may include a throwable observation device configured to be thrown into the potentially hostile environment and to capture at least thermal images of portions of the environment and a mobile handset configured to wirelessly receive the captured thermal images from the observation device. The observation device may include a durable housing structure having openings, an imaging module in each of the openings, a processor for processing the captured thermal images, and communications components for transmitting the captured thermal images to the mobile handset. The mobile handset may include a processor for further processing the received captured thermal images and a display for displaying processed thermal images.

Claims (39)

1 . A throwable imaging device, comprising:

a housing structure having a plurality of openings, wherein the housing structure is configured to withstand an impact resulting from being thrown; and

an imaging module in each of the plurality of openings, wherein at least one of the imaging modules is configured to capture a thermal image.

2 . The throwable imaging device of claim 1 , wherein the housing structure comprises a durable housing structure having a plurality of raised ridges.

3 . The throwable imaging device of claim 2 , wherein the plurality of raised ridges form a polyhedral pattern, and wherein each of the plurality of openings is formed at a vertex of the polyhedral pattern.

4 . The throwable imaging device of claim 1 , wherein each imaging module comprises a long wavelength infrared imaging module including at least one microbolometer.

5 . The throwable imaging device of claim 4 , further comprising:

a processor configured to stitch together long wavelength infrared images from at least some of the long wavelength infrared imaging modules to form a wide-angle long wavelength infrared image; and

one or more sensors comprising at least one of a gas sensor, an oxygen sensor, a volatile organic compound sensor, a biosensor, a chemical agent detector, an explosives sensor, and/or a radiation detector.

6 . The throwable imaging device of claim 5 , wherein the wide-angle long wavelength infrared image comprises a hemispherical long wavelength infrared image, and wherein the processor is further configured to correct at least one of the long wavelength thermal images according to a non-uniformity correction process using an intentionally blurred thermal image.

7 . The throwable imaging device of claim 1 , further comprising a wireless communications component for transmitting the captured thermal image to external equipment.

8 . The throwable imaging device of claim 1 , further comprising a proximity sensor and/or a solar power pad.

9 . The throwable imaging device of claim 1 , further comprising an internal weighting component that influences an orientation of the throwable imaging device.

10 . The throwable imaging device of claim 1 , further comprising a positioning component for generating position data for the throwable imaging device.

11 . The throwable imaging device of claim 10 , further comprising a processor configured to combine the position data and image data captured using the imaging modules to generate a geo-referenced image.

12 . A method, comprising:

inserting a durable compact multisensor observation device into an environment;

capturing, at a focal plane array of an infrared imaging module that is mounted on the durable compact multisensor observation device, a thermal image of a portion of the environment; and

transmitting the captured thermal image to a mobile handset.

13 . The method of claim 12 , wherein the inserting the durable compact multisensor observation device into the environment comprises throwing, by a human user, of the durable compact multisensor observation device into the environment.

14 . The method of claim 12 , wherein the inserting the durable compact multisensor observation device into the environment comprises launching, by a launching device, of the durable compact multisensor observation device into the environment.

15 . The method of claim 12 , further comprising:

capturing, at additional focal plane arrays of additional infrared imaging modules that are mounted on the durable compact multisensor observation device, additional thermal images of additional portions of the environment; and

combining the captured thermal image and the additional captured thermal images to form a wide-angle thermal image.

16 . The method of claim 15 , wherein the transmitting the captured thermal image to the mobile handset comprises transmitting the wide-angle thermal image to the mobile handset, the method further comprising displaying the wide-angle thermal image using the mobile handset.

17 . A system comprising:

an observation device configured to be thrown into a potentially hostile environment and to capture a thermal image of at least a portion of the potentially hostile environment; and

a mobile handset configured to wirelessly receive the captured thermal image from the observation device.

18 . The system of claim 17 , wherein the observation device comprises:

a durable housing structure having openings;

an imaging module in each of the openings;

a processor configured to process the captured thermal image; and

communications components for transmitting the captured thermal image to the mobile handset.

19 . The system of claim 18 , wherein the mobile handset comprises:

a processor for further processing the received captured thermal image; and

a display for displaying the processed thermal image.

20 . The system of claim 19 , wherein at least one of the imaging modules comprises:

an infrared imaging module; and

a non-thermal imaging module, wherein the processor is configured to generate an image comprising high-spatial frequency content from an image generated using the non-thermal imaging module fused with the captured thermal image.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2015
From: TEICH, ANDREW C.; FRANK, JEFFREY D.; LAMMERT, BRENT; SCANLON, THOMAS J.; HÖGASTEN, NICHOLAS; HOELTER, THEODORE R.; STRANDEMAR, KATRIN; BOULANGER, PIERRE; KURTH, ERIC A.; SHARP, BARBARA
To: FLIR SYSTEMS, INC.
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