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公开(公告)号:WO2023089960A1
公开(公告)日:2023-05-25
申请号:PCT/JP2022/036052
申请日:2022-09-28
Applicant: ソニーグループ株式会社
Inventor: 小松 英寛
Abstract: [課題]簡単な操作で移動体のカメラの姿勢を制御する。 [解決手段]本開示の実施形態に係る制御方法は、ユーザにより把持又は装着可能な操作装置の姿勢情報を、前記操作装置に設けられたモーションセンサのセンシング信号に基づき取得し、前記操作装置への第1ユーザ操作に基づき、移動体に設けられた撮像装置の姿勢を遠隔制御する遠隔制御モードを実行/アクティベートし、前記遠隔制御モードが実行/アクティベートされたことを示す通知情報を前記ユーザに出力し、前記遠隔制御モードが実行/アクティベートされた期間の少なくとも一部の間、前記姿勢情報に基づき、前記撮像装置の姿勢を制御する。
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公开(公告)号:WO2023059641A1
公开(公告)日:2023-04-13
申请号:PCT/US2022/045678
申请日:2022-10-04
Applicant: GETAC CORPORATION , WHP WORKFLOW SOLUTIONS, INC.
Inventor: ADEEL, Muhammad , GUZIK, Thomas
IPC: G06F1/16 , G08B25/01 , G08B21/02 , A41D1/00 , A41D1/04 , B64C39/024 , B64U2101/00 , B64U2101/20 , G06N20/00 , G08B25/016 , G08B25/10 , G08B25/14 , H04N23/66 , H04W4/021 , H04W4/023 , H04W4/38 , H04W4/90 , H04W76/50
Abstract: Sensor data from one or more protective equipment sensors of protective equipment worn by a person are received. In response to determining based at least on the sensor data that no emergency situation occurred for the person, sensor data is sent from the body-worn hub to a server when a route of communication is available. In response to determining based at least on the sensor data that an emergency situation occurred for the person and at least one route of communication is currently available, the sensor data is sent from the body-worn hub to the server via at least one route of communication. However, in response to determining based at least on the sensor data that an emergency situation occurred for the person and there is no available route of communication, the sensor data is analyzed at the body-worn hub to determine whether the person is injured.
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公开(公告)号:WO2023058360A1
公开(公告)日:2023-04-13
申请号:PCT/JP2022/032568
申请日:2022-08-30
Applicant: HITACHI ASTEMO, LTD.
Inventor: IRIE Kota , WATTS Lars , KUNDU Subrata Kumar , ZHOU Xunfei , BANGALORE RAMAIAH Naveen Kumar
IPC: G08G1/16 , G06T7/00 , G08G1/00 , H04N5/91 , H04N5/92 , H04N7/18 , G06V20/56 , H04N23/61 , H04N23/617 , H04N23/66 , H04N23/815 , H04N23/90 , H04N7/181
Abstract: Example implementations are described for dynamic image compression in autonomous vehicles with multiple cameras. In example implementations, the cameras of a vehicle may be prioritized based on various features, and different image compression techniques may be assigned to different cameras in the vehicle, based on the priorities of the cameras, to reduce overall processing load on, for example, an Electronic Control Unit of the vehicle.
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公开(公告)号:WO2023278132A1
公开(公告)日:2023-01-05
申请号:PCT/US2022/033331
申请日:2022-06-14
Applicant: SNAP INC.
Inventor: BROWN, Edmund , LUCAS, Benjamin , NIELSEN, Simon , RODRIGUEZ II, Jonathan M. , ZHUANG, Richard
IPC: H04N5/232 , G02B2027/0138 , G02B2027/014 , G02B2027/0141 , G02B2027/0178 , G02B27/017 , G02B27/0172 , H04N13/239 , H04N13/296 , H04N13/344 , H04N13/383 , H04N2213/001 , H04N2213/008 , H04N23/57 , H04N23/63 , H04N23/66 , H04N23/695
Abstract: Eyewear providing an interactive augmented reality experience to users in a first physical environment viewing objects in a second physical environment (e.g., X-ray effect). The second environment may be a room positioned behind a barrier, such as a wall. The user views the second environment via a sensor system moveable on the wall using a track system. As the user in the first environment moves the eyewear to face the outside surface of the wall along a line-of-sight (LOS) at a location (x, y, z), the sensor system on the track system repositions to the same location (x, y, z) on the inside surface of wall. The image captured by the sensor system in the second environment is wirelessly transmitted to the eyewear for displayed on the eyewear displays, providing the user with an X-ray effect of looking through the wall to see the objects within the other environment.
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公开(公告)号:WO2023085213A1
公开(公告)日:2023-05-19
申请号:PCT/JP2022/041191
申请日:2022-11-04
Applicant: 株式会社小糸製作所
IPC: B60Q1/00 , B60Q1/14 , B60Q1/24 , B60Q11/00 , H04N23/66 , H05B47/125 , H05B47/165 , H05B47/20
Abstract: 配光制御装置6は、撮像装置4から自車前方の画像情報IMGを受け、車両ECU300から前方車両の位置情報POSを受けて、前方車両に対する遮光領域を定める第1演算処理部8と、第1演算処理部8から遮光領域情報SHDを受け、基本配光パターンに遮光領域を合成して、光学ユニット2に形成させる配光パターンを定める第2演算処理部10と、を備える。第1演算処理部8は、並列処理型演算装置で構成される。第2演算処理部10は、逐次処理型演算装置で構成される。
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公开(公告)号:WO2023015127A2
公开(公告)日:2023-02-09
申请号:PCT/US2022/074224
申请日:2022-07-27
Applicant: QUALCOMM INCORPORATED
Inventor: HOLLAND, Wesley James , VOGELSANG, Brian , BISAIN, Abhijeet , ARELLANES, David
IPC: G01S5/02 , G01S5/16 , G01S5/18 , G01S13/765 , G01S13/825 , G01S5/0295 , G06F3/011 , G06F3/16 , G06V10/758 , G06V10/98 , G06V20/80 , G06V2201/02 , G10L25/51 , G16Y10/75 , G16Y40/35 , G16Y40/60 , H04L12/2807 , H04L67/12 , H04L67/52 , H04N21/4122 , H04N21/4131 , H04N23/66
Abstract: Systems, methods, and non-transitory media are provided for localizing and mapping smart devices. An example method can include receiving, by an extended reality (XR) device, an identification output from a connected device that is coupled directly or indirectly to the XR device, the identification output including an audio pattern, a display pattern, and/or a light pattern; detecting the identification output from the connected device; and based on the identification output from the connected device, mapping the connected device in a coordinate system of the XR device.
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