[미국특허]
Wearable imaging devices, systems, and methods
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
H04N-007/18
H04N-005/33
H04N-005/225
H04N-005/232
출원번호
US-0506430
(2014-10-03)
등록번호
US-9807319
(2017-10-31)
발명자
/ 주소
Teich, Andrew C.
Frank, Jeffrey D.
Högasten, Nicholas
Hoelter, Theodore R.
Strandemar, Katrin
Boulanger, Pierre
Kurth, Eric A.
Sharp, Barbara
출원인 / 주소
FLIR Systems, Inc.
대리인 / 주소
Haynes and Boone, LLP
인용정보
피인용 횟수 :
0인용 특허 :
61
초록▼
Wearable systems with thermal imaging capabilities may be provided for detecting the presence and location of persons or animals in an environment surrounding the system in accordance with an embodiment. A wearable system may include a wearable structure such as a helmet with a plurality of imaging
Wearable systems with thermal imaging capabilities may be provided for detecting the presence and location of persons or animals in an environment surrounding the system in accordance with an embodiment. A wearable system may include a wearable structure such as a helmet with a plurality of imaging modules mounted to the wearable structure. An imaging module may include one or more imaging components such as infrared imaging modules and visible light cameras. Thermal images captured using the infrared imaging modules may be used to detect the presence of a person in the thermal images. The wearable imaging system may include one or more alert components that alert the wearer when a person is detected in the thermal images. The alert components may be used to generate a location-specific alert that alerts the wearer to the location of the detected person. A wearable imaging system may be a multidirectional threat monitoring helmet.
대표청구항▼
1. An apparatus, comprising: a wearable structure;a plurality of infrared imaging modules mounted around a circumference of the wearable structure, wherein each of the plurality of infrared imaging modules is configured to capture a thermal image of a scene;a plurality of alert components mounted ar
1. An apparatus, comprising: a wearable structure;a plurality of infrared imaging modules mounted around a circumference of the wearable structure, wherein each of the plurality of infrared imaging modules is configured to capture a thermal image of a scene;a plurality of alert components mounted around the circumference of the wearable structure; andone or more processors in communication with the plurality of infrared imaging modules, wherein the one or more processors are configured to: detect an object in the scene using the thermal images captured by the plurality of infrared imaging modules;determine a position of the detected object based on which of the plurality of infrared imaging modules captured the thermal images with the detected object;select at least one of the plurality of alert components based at least on the determined position; andgenerate a location-specific alert for a wearer of the wearable structure by operating the selected at least one of the plurality of alert components, wherein the location-specific alert is associated with the position of the detected object. 2. The apparatus of claim 1, wherein the alert component comprises a haptic component. 3. The apparatus of claim 1, wherein the alert component comprises an audio component. 4. The apparatus of claim 1, wherein the alert component comprises a heat-generating component. 5. The apparatus of claim 1, wherein the one or more processors are further configured to correct the thermal image according to a non-uniformity correction process using an intentionally blurred thermal image. 6. The apparatus of claim 1, wherein each alert component is associated with one or more of the plurality of infrared imaging modules based at least on a location of the alert component on the wearable structure, wherein the position of the detected object comprises a distance and/or angular position determined based on the thermal images having the detected object. 7. The apparatus of claim 6, wherein the distance comprises a distance between the detected object and the wearable structure, and wherein an intensity of the location-specific alert is based on the distance between the detected object and the wearable structure. 8. The apparatus of claim 1, wherein the wearable structure comprises a head piece for the wearer, wherein the plurality of infrared imaging modules is collectively configured to capture a 360 degree field of view, and wherein each of the plurality of infrared imaging modules is configured to capture a portion of the 360 degree field of view. 9. The apparatus of claim 8, wherein the plurality of infrared imaging modules comprises a filter selected from the group consisting of a short-wave infrared filter, a mid-wave infrared filter, a long-wave infrared filter, and a narrow-band filter, wherein the one or more processors are configured to generate an image based on the captured 360 degree field of view, the apparatus further comprising: a display disposed on the wearable structure, the display configured to display the generated image. 10. The apparatus of claim 1, further comprising at least one non-thermal imaging module mounted on the wearable structure, and wherein the one or more processors are configured to generate an image comprising high-spatial frequency content from an image generated using the one non-thermal imaging module fused with the thermal image. 11. The apparatus of claim 1, wherein the one or more processors are further configured to: determine a distance and an angular position of the detected potential threat based on the determined position;detect a change in the distance or the angular position; andadjust the intensity of the location-specific alert based on the detected change. 12. The apparatus of claim 1, wherein the one or more processors are further configured to determine a posture of the object, and wherein the one or more processors are configured to generate the location-specific alert when the object is detected and when the posture of the object is an alert-triggering posture. 13. The apparatus of claim 1, wherein the wearable structure comprises a flap structure, and wherein the flap structure comprises a display configured to display a thermal image captured by at least one of the plurality of infrared imaging modules. 14. The apparatus of claim 1, wherein the object comprises carbon dioxide. 15. A method, comprising: capturing, at a respective focal plane array (FPA) of each of a plurality of infrared imaging modules, a thermal image of a scene within a respective field of view (FOV) of the respective infrared imaging module, wherein each infrared imaging module is mounted on a wearable structure;detecting an object in the thermal image captured by the plurality of infrared imaging modules;determining a position of the detected object based at least on which of the plurality of infrared imaging modules captured the thermal images with the detected object;selecting at least one of a plurality of alert components based at least on the determined position, wherein the plurality of alert components is mounted on the wearable structure; andgenerating a location-specific alert for a wearer of the wearable structure by operating the selected at least one of the plurality of alert components, wherein the location-specific alert is associated with the position of the detected object. 16. The method of claim 15, wherein the position comprises an angular position and a distance between the detected object and the wearable structure, and wherein an intensity of the location-specific alert is based on the distance between the detected object and the wearable structure. 17. The method of claim 15, wherein each of the plurality of infrared imaging modules has a respective location on the wearable structure and wherein the generating the location-specific alert comprises generating a vibration at the location of the one of the plurality of infrared imaging modules. 18. The method of claim 15, further comprising: displaying an image of the detected object to the wearer; andcommunicating detected object information associated with the detected object to an external device. 19. A multidirectional threat monitoring helmet comprising: a protective head covering structure;a plurality of infrared imaging modules mounted around a circumference of the protective head covering structure, each having a field of view that includes a portion of a scene;a plurality of alert components mounted around the circumference of the protective head covering structure; andone or more processors coupled to the plurality of infrared imaging modules and the plurality of alert components, wherein the one or more processors are configured to: detect a potential threat using images captured by the plurality of infrared imaging modules;determine a position of the detected potential threat based at least on which of the plurality of infrared imaging modules captured the images with the potential threat;select at least one of the plurality of alert components based at least on the determined position; andgenerate an alert associated with the potential threat using the selected at least one of the plurality of alert components.
Lee, Kangeun; Son, Changyong; Lee, Insung; Shin, Jaehyun; Kim, Jonghun; Jung, Kyuhyuk; Ahn, Youngwook, High-band speech coding apparatus and high-band speech decoding apparatus in wide-band speech coding/decoding system and high-band speech coding and decoding method performed by the apparatuses.
Tsubouchi Takumi,JPX ; Nishigaki Nobutaka,JPX ; Sakai Makoto,JPX ; Honma Toru,JPX, Method of switching video sources and computer system employing this method.
Bae, Byeong-woo; Lee, Sung-dong; Suk, Hong-seong; Yoo, Jina; Lee, Ki-won, Mobile communication terminal equipped with temperature compensation function for use in bio-information measurement.
Parkulo,Craig M.; Barbee,Wesley McChord; Malin,Jerald Robert; Landis,Jeffrey Lynn; Shannon,Matthew, Personal multimedia communication system and network for emergency services personnel.
Lieberman,Klony; Sharon,Yuval; Naimi,Eyal; Maor,Yaniv; Tsachi,Mattan; Arnon,Boas; Turm,Amichai, Virtual data entry device and method for input of alphanumeric and other data.
Lieberman,Klony; Sharon,Yuval; Naimi,Eyal; Maor,Yaniv; Tsachi,Mattan; Arnon,Boas; Turm,Amichai, Virtual data entry device and method for input of alphanumeric and other data.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.