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公开(公告)号:US20240250955A1
公开(公告)日:2024-07-25
申请号:US18427199
申请日:2024-01-30
Applicant: Meta Platforms Technologies, LLC
Inventor: Michael James LEBEAU , Manuel Ricardo FREIRE SANTOS , Aleksejs ANPILOGOVS , Alexander SORKINE HORNUNG , Björn WANBO , Connor TREACY , Fangwei LEE , Federico RUIZ , Jonathan MALLINSON , Jonathan Richard MAYOH , Marcus TANNER , Panya INVERSIN , Sarthak RAY , Sheng SHEN , William Arthur Hugh STEPTOE , Alessia MARRA , Gioacchino NORIS , Derrick READINGER , Jeffrey Wai-King LOCK , Jeffrey WITTHUHN , Jennifer Lynn SPURLOCK , Larissa Heike LAICH , Javier Alejandro SIERRA SANTOS
IPC: H04L9/40 , G06F3/01 , G06F3/02 , G06F3/14 , G06T19/00 , G06V40/10 , H04L65/401 , H04L65/403 , H04L65/70
CPC classification number: H04L63/107 , G06F3/011 , G06F3/0219 , G06F3/1423 , G06T19/003 , G06T19/006 , G06V40/107 , H04L65/4015 , H04L65/4046 , H04L65/70 , G06T2219/024
Abstract: Aspects of the present disclosure are directed to creating and administering artificial reality collaborative working environments and providing interaction modes for them. An XR work system can provide and control such artificial reality collaborative working environments to enable, for example, A) links between real-world surfaces and XR surfaces; B) links between multiple real-world areas to XR areas with dedicated functionality; C) maintaining access, while inside the artificial reality working environment, to real-world work tools such as the user's computer screen and keyboard; D) various hand and controller modes for different interaction and collaboration modalities; E) use-based, multi-desk collaborative room configurations; and F) context-based auto population of users and content items into the artificial reality working environment.
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公开(公告)号:US20240112412A1
公开(公告)日:2024-04-04
申请号:US17936516
申请日:2022-09-29
Applicant: Meta Platforms Technologies, LLC
Inventor: Björn WANBO , Michael James LEBEAU , William Arthur Hugh STEPTOE , Jonathan MALLINSON , Steven James WILSON , Vasanth Kumar RAJENDRAN , Vasyl BARAN
IPC: G06T19/00
CPC classification number: G06T19/006
Abstract: A room manager can generate mappings for a real-world room that support a shared XR environment. For example, the real-world room can include real-world objects and surfaces, such as a table(s), chair(s), wall(s), door(s), window(s), etc. The room manager can generate XR object definitions based on information received about the real-world room, object(s), and surface(s). For example, the room manager can implement a flow that guides a user equipped with an XR system to provide information for the XR object definitions, such as real-world surfaces that map to the XR object(s), borders (e.g., measured using a component of the XR system), such as borders on real-world surfaces, semantic information (e.g., number of seat assignments at an XR table, size of XR objects, etc.), and other suitable information. Implementations generate previews of the shared XR environment, such as a local preview and a remote preview.
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公开(公告)号:US20240112414A1
公开(公告)日:2024-04-04
申请号:US17936521
申请日:2022-09-29
Applicant: Meta Platforms Technologies, LLC
Inventor: Björn WANBO , Michael James LEBEAU , William Arthur Hugh STEPTOE , Jonathan MALLINSON , Steven James WILSON , Vasanth Kumar RAJENDRAN , Vasyl BARAN
CPC classification number: G06T19/006 , G02B27/0172 , G06F3/16 , G06T7/13 , G06T13/40 , G02B2027/0178 , G06T2219/024
Abstract: A room manager can generate mappings for a real-world room that support a shared XR environment. For example, the real-world room can include real-world objects and surfaces, such as a table(s), chair(s), wall(s), door(s), window(s), etc. The room manager can generate XR object definitions based on information received about the real-world room, object(s), and surface(s). For example, the room manager can implement a flow that guides a user equipped with an XR system to provide information for the XR object definitions, such as real-world surfaces that map to the XR object(s), borders (e.g., measured using a component of the XR system), such as borders on real-world surfaces, semantic information (e.g., number of seat assignments at an XR table, size of XR objects, etc.), and other suitable information. Implementations generate previews of the shared XR environment, such as a local preview and a remote preview.
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公开(公告)号:US20230188533A1
公开(公告)日:2023-06-15
申请号:US18166512
申请日:2023-02-09
Applicant: Meta Platforms Technologies, LLC
Inventor: Michael James LEBEAU , Manuel Ricardo FREIRE SANTOS , Aleksejs ANPILOGOVS , Alexander SORKINE HORNUNG , Björn WANBO , Connor TREACY , Fangwei LEE , Federico RUIZ , Jonathan MALLINSON , Jonathan Richard MAYOH , Marcus TANNER , Panya INVERSIN , Sarthak RAY , Sheng SHEN , William Arthur Hugh STEPTOE , Alessia MARRA , Gioacchino NORIS , Derrick READINGER , Jeffrey Wai-King LOCK , Jeffrey WITTHUHN , Jennifer Lynn SPURLOCK , Larissa Heike LAICH , Javier Alejandro Sierra SANTOS
IPC: H04L9/40 , G06F3/02 , G06F3/01 , G06F3/14 , G06V40/10 , G06T19/00 , H04L65/401 , H04L65/403 , H04L65/70
CPC classification number: H04L63/107 , G06F3/0219 , G06F3/011 , G06F3/1423 , G06V40/107 , G06T19/006 , H04L65/4015 , G06T19/003 , H04L65/4046 , H04L65/70 , G06T2219/024
Abstract: Aspects of the present disclosure are directed to creating and administering artificial reality collaborative working environments and providing interaction modes for them. An XR work system can provide and control such artificial reality collaborative working environments to enable, for example, A) links between real-world surfaces and XR surfaces; B) links between multiple real-world areas to XR areas with dedicated functionality; C) maintaining access, while inside the artificial reality working environment, to real-world work tools such as the user's computer screen and keyboard; D) various hand and controller modes for different interaction and collaboration modalities; E) use-based, multi-desk collaborative room configurations; and F) context-based auto population of users and content items into the artificial reality working environment.
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公开(公告)号:US20240320938A1
公开(公告)日:2024-09-26
申请号:US18731869
申请日:2024-06-03
Applicant: Meta Platforms Technologies, LLC
Inventor: Björn WANBO , Michael James LEBEAU , William Arthur Hugh STEPTOE , Jonathan MALLINSON , Steven James WILSON , Vasanth Kumar RAJENDRAN , Vasyl BARAN
CPC classification number: G06T19/006 , G02B27/0172 , G06F3/16 , G06T7/13 , G06T13/40 , G02B2027/0178 , G06T2219/024
Abstract: A room manager can generate mappings for a real-world room that support a shared XR environment. For example, the real-world room can include real-world objects and surfaces, such as a table(s), chair(s), wall(s), door(s), window(s), etc. The room manager can generate XR object definitions based on information received about the real-world room, object(s), and surface(s). For example, the room manager can implement a flow that guides a user equipped with an XR system to provide information for the XR object definitions, such as real-world surfaces that map to the XR object(s), borders (e.g., measured using a component of the XR system), such as borders on real-world surfaces, semantic information (e.g., number of seat assignments at an XR table, size of XR objects, etc.), and other suitable information. Implementations generate previews of the shared XR environment, such as a local preview and a remote preview.
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公开(公告)号:US20240112413A1
公开(公告)日:2024-04-04
申请号:US17936518
申请日:2022-09-29
Applicant: Meta Platforms Technologies, LLC
Inventor: Björn WANBO , Michael James LEBEAU , William Arthur Hugh STEPTOE , Jonathan MALLINSON , Steven James WILSON , Vasanth Kumar RAJENDRAN , Vasyl BARAN
CPC classification number: G06T19/006 , G06T3/40 , G06T2219/024
Abstract: A room manager can generate mappings for a real-world room that support a shared XR environment. For example, the real-world room can include real-world objects and surfaces, such as a table(s), chair(s), wall(s), door(s), window(s), etc. The room manager can generate XR object definitions based on information received about the real-world room, object(s), and surface(s). For example, the room manager can implement a flow that guides a user equipped with an XR system to provide information for the XR object definitions, such as real-world surfaces that map to the XR object(s), borders (e.g., measured using a component of the XR system), such as borders on real-world surfaces, semantic information (e.g., number of seat assignments at an XR table, size of XR objects, etc.), and other suitable information. Implementations generate previews of the shared XR environment, such as a local preview and a remote preview.
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