Abstract:
The present disclosure relates to a vehicle control apparatus disposed in a vehicle and a control method of the vehicle. A vehicle control apparatus according to one embodiment of the present disclosure is a vehicle control apparatus disposed in a vehicle, and comprises: a camera for capturing an image of an object which approaches the vehicle; a seat driving unit for driving a seat disposed in the vehicle; and a processor for sensing information related to the object on the basis of the image captured through the camera and controlling the seat driving unit such that the seat is disposed at a predetermined position, on the basis of the sensed information related to the object.
Abstract:
A control method of a head mounted display (HMD) is disclosed. The control method of the HMD includes detecting a first route of a first moving object and a second route of a second moving object in front of the HMD, detecting a third route along which user's eye gaze moves, setting the first moving object as a reference object if the detected first route is substantially identical with the detected third route, setting the second moving object as the reference object if the detected second route is substantially identical with the detected third route, and performing an eye gaze calibration based on a route of the set reference object and the detected third route.
Abstract:
According to an embodiment, a method for controlling a portable device connected to an earphone having a coil includes detecting removal of one of left and right units of the earphone worn by a user, generating an electromagnetic pattern corresponding to an Identifier(ID) of the portable device at the removed unit of the earphone, and receiving data from the external device in correspondence with the ID of the portable device. According to an embodiment, a method for controlling a display device includes displaying a Graphic User Interface on a display unit, sensing an earphone within a detection area of the display unit, sensing an electromagnetic pattern of the earphone within a detection area of the display unit, acquiring an ID of an external device connected to the earphone from the sensed electromagnetic pattern, and transmitting data to the external device identified by the acquired ID of the external device.
Abstract:
The present invention relates to a mirror type display device and a control method thereof, and a mirror type display device of the present invention includes a mirror type display; a camera provided on a front surface of the display; an interface for recognizing a user's dress(wear) located in front of the display and a mobile terminal carried by the user through the camera and recommending an operation mode of the recognized mobile terminal based on the recognized dress(wear), and a controller. Thus, the user projecting the image on the mirror-type display device can be photographed to recognize the dress, and the mobile terminal recognized by the user can be recognized to recommend the mode of the mobile terminal suitable for the current dress mode.
Abstract:
The present disclosure relates to a method for providing service by controlling robots within a service area and a robot implementing the method, and according to an embodiment of the present disclosure, a system of providing service by controlling robots within the service area include a control server configured to receive customer information on customer seated at a table within the service area and ordered menu item information from a guide robot or a table robot disposed in the service area and transmit, to a cooking robot, the received information and cooking instruction information generated based on a situation of a plurality of orders placed within the service area and a plurality of robots.
Abstract:
Disclosed is a control method of a portable device, including activating a normal camera mode of a camera application, activating a normal standby mode upon detecting a normal lock event in the normal camera mode, activating a temporary standby mode upon detecting a temporary lock event in the normal camera mode, and releasing the temporary standby mode and activating the temporary camera mode upon detecting a first temporary unlock event in the temporary standby mode. In this case, a first image captured in the normal camera mode is stored in a first folder and a second image captured in the temporary camera mode is stored in a second folder. The first folder and the second folder are different folders.