Abstract:
A mobile terminal including an input unit; a display unit; a short-range communication unit; and a controller configured to wirelessly communicate, via the short-range communication unit, with a payment terminal for making a payment using the mobile terminal; display user-settable payment information on the display unit related to making the payment using the mobile terminal; and in response to selection of the user-settable payment information, transmit the selected user-settable payment information to the payment terminal for making the payment via the short-range communication unit.
Abstract:
A mobile terminal includes a display unit, a camera that is configured to capture images, and a controller. The controller is configured to access a preview image that is captured by the camera and that includes an object. The controller is further configured to determine, based on the preview image, whether the camera is focused on the object and a prescribed condition of the object is satisfied. The controller is further configured to output, based on a determination that the camera is focused on the object and the prescribed condition of the object is satisfied, information associated with the object by overlaying the information associated with the object on the preview image.
Abstract:
The present invention relates to a mobile terminal providing an image printed out through a photo printer and related information, and a method of controlling the same. The mobile terminal includes a memory, a camera, a display; and a controller configured to cause the display to display a preview image of image data received via the camera and cause the display to display an indicator indicating that an image object included in the preview image corresponds to a specific image stored in the memory when the image object corresponds to the specific image, wherein the specific image has been previously printed out via a printer device.
Abstract:
The present invention relates to a mobile terminal adapted to guide a plurality of functions, performable on the current screen, to a front display unit in accordance with user interaction on a rear surface input unit, and relates to a method for operating the rear surface input unit of same, and the present invention comprises the steps of: displaying content on the front display unit; detecting a first input on the rear surface input unit; displaying, through a guide unit, at least one function performable on the current screen on the front display unit on the basis of the type of first input detected; and performing the function in accordance with a second input on the rear surface input unit.
Abstract:
A mobile terminal including a wireless communication unit configured to provide wireless communication; a touch screen; and a controller configured to receive a user signature that identifies a user and has a predetermined trace on the touch screen, and enter a user-only accessible folder based on the received user signature.
Abstract:
Disclosed are a digital signage platform providing apparatus, an operating method thereof, and a system including the same. By calculating a reference point of a building area for displaying content information related to a plurality of pieces of POI information based on sensing data of a vehicle and floor number information and spatial coordinates for the building area, rendering AR digital signage corresponding to the content information in one or more AR display areas determined based on the calculated reference point, and providing the rendering result to a user terminal, the result may be mapped, on a floor-by-floor basis, to an AR display area of a building in a driving image acquired through a vision sensor. Accordingly, it is possible to overcome the limitation of displaying only one advertisement and maximize an advertisement effect to provide a plurality of various advertisements in one building.
Abstract:
Disclosed are a display device linked to a vehicle and an operating method thereof. More specifically, the display device may communicate with a system to display AR digital signage on a building in a driving image of the vehicle on a floor-by-floor basis. Also, by mapping and displaying AR digital signage that has been displayed on the building on a floor-by-floor basis on an AR carpet displayed on a road in the driving image while the vehicle is about to or is expected to enter the building, it is possible to significantly enhance visibility and ensure safe driving.
Abstract:
A processor of a route provision apparatus according to an embodiment of the present invention is characterized in outputting map information received from a server, on a rollable display provided in a vehicle, determining a change in the size of a display area of the rollable display, and requesting the server for map information to be displayed on the changed display area, on the basis of the changed size of the display area, and receiving the map information.
Abstract:
A route providing device includes a communication unit configured to receive map information from a server, and a processor configured to determine a lane in which the vehicle is traveling based on image information received from an image sensor, determine an optimal route in lane units for the vehicle based on the determined lane using the map information, generate autonomous driving visibility information by fusing sensing information of one or more sensors of the vehicle with the optimal route, input information related to the vehicle to an artificial neural network when the vehicle enters an area satisfying a preset condition existing on the optimal route, and obtain an updated optimal route as an output of the artificial neural network, wherein the updated optimal route is in units of lanes in the area satisfying the preset condition.
Abstract:
A path providing device configured to provide a path information to a vehicle includes: a communication unit configured to receive map information from a server, the map information including a plurality of layers of data, an interface unit configured to receive sensing information from one or more sensors disposed at the vehicle, a memory configured to store information used to determine and update the optimal path, and divided into a plurality of storage spaces, and a processor configured determine an optimal path for guiding the vehicle from an identified lane, generate autonomous driving visibility information based on the sensing information and the determined optimal path, update the optimal path based on dynamic information related to a movable object located in the optimal path and the autonomous driving visibility information, and store the plurality of map information separately in the plurality of storage space.