Abstract:
A spatial position of at least one first body part, arranged within a sensing range of a sensing device of the motor vehicle, of a vehicle occupant is sensed with respect to the motor vehicle by the sensing device. An anthropometric data model is provided with data including the dimensions of predetermined body parts of a person and the positioning of the body parts with respect to one another. As a result, a spatial position of at least one second body part of the same vehicle occupant which is arranged outside the sensing range of the sensing device can be determined, taking into consideration the sensed spatial position of the first body part and the anthropometric data model. At least one functional unit of the motor vehicle is actuated taking into consideration the sensed spatial position of the second body part.
Abstract:
A virtual reality system is operated by, detecting a spatial position of a head of a first person who is wearing virtual reality glasses and headphones, displaying a virtual object within a virtual environment from a virtual direction of view by the virtual reality glasses. The virtual direction of view is specified depending on the detected spatial position of the head. An acoustic recording is reproduced by the headphones. A speech sound of a second person is detected a microphone device and converted into a speech signal. The speech signal is also reproduced by the headphones, the left and right loudspeakers of the headphones being operated depending on the detected spatial position of the head such that the speech signal is reproduced by the loudspeakers as if the speech sound were to pass to the first person without the headphones being worn.
Abstract:
Input device has a touch sensitive input surface with a sensor for detecting the position of an object touching the input surface, an interface for transferring sensor data and a device for producing haptically detectable feedback, which is designed to move the input surface, which is mounted so as to be movable along an axis.
Abstract:
A display device that can be worn on the head of a vehicle occupant of a motor vehicle is controlled to display a virtual environment within which the vehicle occupant wearing the display device virtually moves according to a detected movement of the motor vehicle. A potential stopping point of the motor vehicle is determined. A deceleration of the motor vehicle is detected within a given environment of the potential stopping point and the display device is controlled to output a virtual scene staging within the virtual environment which causes a deceleration of the virtual movement of the vehicle occupant within the virtual environment corresponding to the deceleration of the motor vehicle.
Abstract:
Movement data characterizing the movement of a vehicle in which electronic smartglasses are used, are sent by a portable apparatus from a data output to the electronic smartglasses for reducing simulator-sickness-induced impairments. The electronic smartglasses display data taking into account the movement data.
Abstract:
Surroundings data, relating to at least one surrounding area in the surroundings of a motor vehicle situated in a field of vision of a vehicle occupant, are obtained by a sensor system of the motor vehicle. At least one piece of information, which needs to be output to the user, is provided by an information source. The information is at least partially overlaid on a display of the surrounding area by a display device with the type of information presentation and/or the position at, and/or the orientation in, which the information presentation is visualized being dependent on the surroundings data.
Abstract:
Operation of a head-worn display device in a motor vehicle includes a control device checking a condition of whether there is a vehicle occupant in the motor vehicle other than a driver, when the motor vehicle is not operated in an autonomous driving mode. If the condition is satisfied then a display of all content by the head-worn display device is stopped by the control device if the display device is virtual reality glasses and the display of exclusively traffic-relevant content by the display device is enabled by the control device if the display device is augmented reality glasses.
Abstract:
Data characterizing a section of a route traveled by a motor vehicle during reproduction of virtual contents, reproduced virtual contents and/or states of vehicle occupants during reproduction of the virtual contents are transferred to a vehicle-external server device. The transferred data are evaluated by the vehicle-external server device.
Abstract:
An image is displayed by smartglasses, the image being at least partly superimposed on a real environment of the smartglasses when the real environment is viewed through the smartglasses. In this case, the image represents an image of the real environment which is recorded by a night-vision image-recording device. The image is displayed in such a way that an image object in the recorded image, which corresponds to a real object arranged in the real environment, is displayed in the image in a manner overlapping the real object in the real environment. In the dark and in the event of poor visibility, potential hazards can be perceived significantly better by virtue of the night-vision images in order that additional driver-assisting information is provided and traffic safety is increased.
Abstract:
A virtual object arranged in a virtual environment is displayed by virtual reality glasses worn by a person. A virtual hand is positioned within the virtual environment in accordance with a hand detected in the real environment. As the virtual hand dips into an area of the virtual object, the representation of the area is changed.