Abstract:
Techniques and systems are provided for dynamically adjusting virtual content provided by an extended reality system. In some examples, a system determines a level of distraction of a user of the extended reality system due to virtual content provided by the extended reality system. The system determines whether the level of distraction of the user due to the virtual content exceeds or is less than a threshold level of distraction, where the threshold level of distraction is determined based at least in part on one or more environmental factors associated with a real world environment in which the user is located. The system also adjusts one or more characteristics of the virtual content based on the determination of whether the level of distraction of the user due to the virtual content exceeds or is less than the threshold level of distraction.
Abstract:
Techniques and systems are provided for dynamically adjusting virtual content provided by an extended reality system. In some examples, a system determines a level of distraction of a user of the extended reality system due to virtual content provided by the extended reality system. The system determines whether the level of distraction of the user due to the virtual content exceeds or is less than a threshold level of distraction, where the threshold level of distraction is determined based at least in part on one or more environmental factors associated with a real world environment in which the user is located. The system also adjusts one or more characteristics of the virtual content based on the determination of whether the level of distraction of the user due to the virtual content exceeds or is less than the threshold level of distraction.
Abstract:
Techniques and systems are provided for dynamically adjusting virtual content provided by an extended reality system. In some examples, a system determines a level of distraction of a user of the extended reality system due to virtual content provided by the extended reality system. The system determines whether the level of distraction of the user due to the virtual content exceeds or is less than a threshold level of distraction, where the threshold level of distraction is determined based at least in part on one or more environmental factors associated with a real world environment in which the user is located. The system also adjusts one or more characteristics of the virtual content based on the determination of whether the level of distraction of the user due to the virtual content exceeds or is less than the threshold level of distraction.
Abstract:
Systems, methods, and non-transitory media are provided for generating obfuscated control interfaces for extended reality (XR) experiences. An example method can include determining a pose of an XR device within a mapped scene of a physical environment associated with the XR device; rendering a virtual control interface within the mapped scene according to a configuration including a first size, a first position relative to the pose of the XR device, a first ordering of input elements, and/or a first number of input elements; and adjusting the configuration of the virtual control interface based on a privacy characteristic of data associated with the virtual control interface and/or characteristics of the physical environment associated with the XR device, the adjusted configuration including a second size, a second ordering of input elements, a second number of input elements, and/or a second position relative to the pose of the XR device and/or first position.
Abstract:
Various aspects of the present disclosure provide for a first device that may establish a wireless docking session with a second device. The first device may determine whether a profile of a second device matches a profile stored in the first device. When such a match exists, the first device may export data to the second device in a format associated with the profile of the second device. When such a match does not exist, the first device may provide an error message or export data to the second device in a format associated with a default profile of the first device. The profile may indicate an operating system, a peripheral component, a display size, a display resolution, a touch screen-capability, a font type, a user setting, a power source or availability, a hardware component, or a software module. Additional aspects, embodiments, and features are also provided herein.
Abstract:
Systems, methods, and non-transitory media are provided for generating private control interfaces for extended reality (XR) experiences. An example method can include determining a pose of an XR device within a mapped scene of a physical environment associated with the XR device; detecting a private region in the physical environment and a location of the private region relative to the pose of the XR device, the private region including an area estimated to be within a field of view (FOV) of a user of the XR device and out of a FOV of a person in the physical environment, a recording device in the physical environment, and/or an object in the physical environment; based on the pose of the XR device and the location of the private region, mapping a virtual private control interface to the private region; and rendering the virtual private control interface within the private region.
Abstract:
Systems, methods, and non-transitory media are provided for capturing a region of interest (ROI) with a multi-camera system. An example method can include initializing image sensors of an electronic device, each image sensor being initialized in a lower-power mode having a lower power consumption than a higher-power mode supported by one or more of the image sensors; obtaining images captured by the image sensors in the lower-power mode; determining, based on the images, that an ROI in a scene is within a field-of-view (FOV) of a first image sensor from the image sensors; based on determining that the ROI is within the FOV of the first image sensor, decreasing the lower-power mode of one or more second image sensors to a power-off mode or an additional lower-power mode having a lower power consumption than the lower-power mode; and capturing, using the first image sensor, an image of the ROI.
Abstract:
A device may be configured to determining display properties for virtual content in an environment with a plurality of physical participants by capturing an image of the environment, analyzing the captured image to identify at least one object in the environment, determining a parameter for the identified object, and determining a display property of a digital representation of virtual content based on the determined parameter. Embodiments may include negotiating display properties with other devices to generate coordinated display properties, and rendering the digital representation of the virtual content so that the remote participant appears to be in the same fixed position to all co-located participants and sized consistent with the co-located participants.
Abstract:
A device may be configured to determining display properties for virtual content in an environment with a plurality of physical participants by capturing an image of the environment, analyzing the captured image to identify at least one object in the environment, determining a parameter for the identified object, and determining a display property of a digital representation of virtual content based on the determined parameter. Embodiments may include negotiating display properties with other devices to generate coordinated display properties, and rendering the digital representation of the virtual content so that the remote participant appears to be in the same fixed position to all co-located participants and sized consistent with the co-located participants.
Abstract:
Systems, methods, and non-transitory media are provided for generating obfuscated control interfaces for extended reality (XR) experiences. An example method can include determining a pose of an XR device within a mapped scene of a physical environment associated with the XR device; rendering a virtual control interface within the mapped scene according to a configuration including a first size, a first position relative to the pose of the XR device, a first ordering of input elements, and/or a first number of input elements; and adjusting the configuration of the virtual control interface based on a privacy characteristic of data associated with the virtual control interface and/or characteristics of the physical environment associated with the XR device, the adjusted configuration including a second size, a second ordering of input elements, a second number of input elements, and/or a second position relative to the pose of the XR device and/or first position.