Abstract:
Digital content can be viewed in a vehicle without suffering from motion sickness by use of a system which includes a vehicle and data glasses. The vehicle includes a control unit and a plurality of sensors connected to the control unit. The data glasses can be wirelessly connected to the control unit and are intended to display a virtual 3-D integrating the digital content.
Abstract:
A planned navigation route of a first motor vehicle is established as a reference navigation route. A second motor vehicle having a planned navigation route which satisfies a prespecified synchronization condition is selected, and a route length of the navigation route of the second motor vehicle is scaled to a route length of the reference navigation route. A route section of the reference navigation route is identified as a synchronizable route section, the route section satisfying a prespecified homogeneity criterion, and a route section of the scaled navigation route is assigned to the synchronizable route section. When the first motor vehicle is on the synchronizable route section and when the second motor vehicle is on the route section of the scaled navigation route assigned to the synchronizable route section, the provided output content which describes an avatar for the second motor vehicle is changed.
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:
A relative movement of a head-wearable electronic display device is determined with respect to a vehicle interior of a vehicle by way of a recording device arranged on the electronic display device and a virtual perspective of a wearer of the electronic display device is adapted to virtual content according to the determined relative movement. A recording range of the recording device is limited to the vehicle interior in order to eliminate distortions, resulting from a relative movement of the vehicle with respect to the vehicle surroundings, with regard to the recording of the relative movement of the electronic display device with respect to the vehicle interior.
Abstract:
A mobile sensor apparatus includes a capture device for capturing vehicle movements of the vehicle and an interface for transmitting data relating to the vehicle movements to a head-worn visual output device. A display system includes the mobile sensor apparatus and the head-worn visual output device.
Abstract:
This disclosure relates to a method for the driverless operation of a vehicle system of a motor vehicle designed for fully automatic control of the motor vehicle. In accordance with at least one sequential criterion, which evaluates a status of the driver, comprising location information describing the current position of the driver and/or comprising resource information describing an amount of a resource that is present or required for the driver, of which resource a supply is present in the motor vehicle, operating information describing the taking of the motor vehicle to a sequential position having a shorter, in particular minimum possible distance from the current position of the driver or from a predicted destination of the driver, is automatically determined and applied. A motor vehicle with an onboard vehicle system and a control device, for execution of the method, are also disclosed.
Abstract:
A method for operating a navigation system, in particular in a motor vehicle, comprising the following steps: determining an upcoming waypoint of a route, which is planned by the navigation system, with respect to which an item of navigation information is to be output to a user, ascertaining surroundings data relating to the surroundings of the waypoint, ascertaining at least one reference object, which is located in the surroundings of the waypoint, from the surroundings data, assigning a verbal designation to the reference object, preparing the navigation information comprising the designation, and acoustically outputting the navigation information.
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:
A detection is made as to whether a vehicle occupant seated on a vehicle seat of a seating system of a motor vehicle has put on a pair of electronic data glasses. If the vehicle occupant has put on a pair of electronic data glasses, a check is performed to determine whether a predetermined minimum distance exists between the vehicle seat and an interior component of the motor vehicle. If the minimum distance exists, an adjustment range of the seating system is restricted in such a way that it is not possible to fall below the minimum distance. If the minimum distance does not exist, the minimum distance is established by automatically adjusting the seating system and/or outputting a message relating to the noncompliance with the minimum distance.