Abstract:
The present invention relates to a head-up display for a vehicle configured to change display positions of a plurality of virtual images displayed through a windshield of the vehicle or the like to implement augmented reality and a control method thereof, and a head-up display for a vehicle according to an embodiment of the present disclosure may include a mirror unit comprising a first mirror for reflecting first and second image lights toward a windshield of the vehicle; a display layer located at the windshield of the vehicle to display a first virtual image corresponding to the first image light in a first region, and display a second virtual image corresponding to the second image light in a second region; and a controller configured to change an inclination of the first mirror to change a display position of the first and the second virtual image.
Abstract:
Disclosed is a vehicle user interface apparatus including a display unit, an interface, and a processor configured to receive a vehicle external image via the interface, specify a first area corresponding to a preset Point of Interest (POI) in the vehicle external image, control the display unit to display a graphic object of augmented reality on the vehicle external image to point out the first area, and control the display unit to display the graphic object along a travel lane to point out the first area.
Abstract:
A user interface apparatus for a vehicle includes: an interface unit; a display unit configured to project an augmented reality (AR) graphic object onto a screen; at least one processor; and a computer-readable medium coupled to the at least one processor having stored thereon instructions which, when executed by the at least one processor, causes the at least one processor to perform operations including: acquiring, through the interface unit, front view image information and vehicle motion information; based on the front view image information, generating the AR graphic object; and based on the vehicle motion information, warping the AR graphic object.
Abstract:
Disclosed is a user interface apparatus for a vehicle, including: an interface unit; a display unit configured to implement multiple display layers each having a different virtual difference; and a processor configured to receive driving situation information of the vehicle through the interface unit, and control the display unit to vary a virtual distance of each of the multiple display layers.
Abstract:
The present invention relates to a head-up display for a vehicle configured to change display positions of a plurality of virtual images displayed through a windshield of the vehicle or the like to implement augmented reality and a control method thereof, and a head-up display for a vehicle according to an embodiment of the present disclosure may include a mirror unit comprising a first mirror for reflecting first and second image lights toward a windshield of the vehicle; a display layer located at the windshield of the vehicle to display a first virtual image corresponding to the first image light in a first region, and display a second virtual image corresponding to the second image light in a second region; and a controller configured to change an inclination of the first mirror to change a display position of the first and the second virtual image.
Abstract:
A vehicle control device provided in a vehicle includes a communication unit, a sensing unit, a display unit, and a processor configured to output driving-related information of an adjacent vehicle decided using at least one of the communication unit and the sensing unit on the display unit based on a satisfaction of a preset condition.
Abstract:
An Augmented Reality (AR) display device interoperating with a vehicle and a method for operating the same are disclosed. An AR display device interoperating with a vehicle according to the present disclosure can display a current driving state of the vehicle while the vehicle is traveling and display a guide related to a predicted next driving situation on a navigation screen using an AR graphic interface. At this time, the AR display device can guide a predicted driving situation in advance by separating and locating a part of the AR graphic interface at a predetermined distance ahead of a predicted location, and allow the separated part of the AR graphic interface to move as the vehicle travels so as to display a guide trajectory along which the vehicle is supposed to travel. This can provide more intuitive and realistic AR guidance to the vehicle.
Abstract:
An Augmented Reality (AR) display device (800) interoperating with a vehicle and a method for operating the same are disclosed. An AR display device according to the present disclosure can recognize an occurrence of a notification event related to a driving lane based on ADAs sensing data of the vehicle, map data, vehicle data, etc., and accordingly display a guidance associated with a lane to be driven, which corresponds to the notification event, by using a second AR object separated from a first AR object indicating a current driving state of the vehicle.
Abstract:
A signal processing device and a vehicle display apparatus including the same are disclosed. The signal processing device according to an embodiment of the present disclosure includes: a memory configured to store data for an augmented reality lane carpet; and a processor configured to detect lane line object based on an image from a camera, wherein in response to the detected lane line object corresponding to a first shape, the processor is configured to set and display an augmented reality lane carpet with a first length, and in response to the detected lane line object corresponding to a second shape with a greater width than the first shape, the processor is configured to set and display an augmented reality lane carpet with a second length greater than the first length. Accordingly, an augmented reality-based lane guide corresponding to a lane shape can be provided.
Abstract:
An Augmented Reality, AR, display device (800) interoperating with a vehicle and a method for operating the same are disclosed. An AR display device interoperating with a vehicle according to the present disclosure can predict a context in which a problem may occur by additionally considering an external resource in addition to map data and sensing data as internal resources while the vehicle travels, and display the predicted context by changing an AR graphic interface in real time, thereby intuitively notifying a driver of the predicted context and a countermeasure therefor. At this time, an AR object separated from the AR graphic interface not only displays a guide for the predicted context but also provides a corresponding guide for safe driving in the predicted context.