Abstract:
The present invention relates to a vehicle capable of driving autonomously and a method of recommending a more appropriate driving mode depending on a driver's status. A vehicle control device for controlling a vehicle comprises: a memory that stores a driving stress map containing stress level information which is calculated for each road section based on a driver's stress information collected while the vehicle is driving on each road section; and a processor that retrieves a stress level for a road section where the vehicle is currently located from the driving stress map and outputs notification information recommending a change to a first driving mode or second driving mode according to the retrieved stress level. The vehicle may perform autonomous driving by the vehicle control apparatus.
Abstract:
The present disclosure relates to a robot provided in a vehicle capable of performing a function related to the vehicle. The robot includes a body, a head positioned above the body, an actuator configured to apply an external force to allow the head to move relative to the body, a camera disposed on the head to capture an image, a communication unit configured to perform communications with one or more devices provided in the vehicle, and a processor configured to control the actuator so that the camera is directed toward an inside or outside of the vehicle based on information received via the communication unit.
Abstract:
An input system for a vehicle having a steering wheel includes an input unit with a plurality of buttons that are disposed in the steering wheel of the vehicle, and a processor configured to detect an event and to assign a function to at least one of the buttons that corresponds to the detected event. At least one of the plurality of buttons includes a display portion configured to display an image corresponding to the assigned function, and an operation portion disposed under the display portion, the operation portion including one or more protruding members that are activatable. The one or more protruding members are configured, based on the image displayed on the display portion being divided into a plurality of areas, to be activated so as to correspondingly constrain a movement of the display portion relative to the operation portion.
Abstract:
A building management robot includes a communication unit configured to recognize an identification device corresponding to a first divided space among at least one divided space in a building and acquire first identification information of the first divided space from the identification device, a camera configured to acquire image data including a position where the identification device is recognized, and a processor configured to recognize a user from the image data, confirm an authentication level of the first divided space of the recognized user from a database, and provide the user with a service based on the confirmed authentication level.
Abstract:
Provided is an image output device mounted on a vehicle capable of performing autonomous driving. In particular, the image output device provides a user interface optimal for an occupant using 5G communication in a vehicle capable of performing autonomous driving. The image output device may be a robot having artificial intelligence. Specifically, the image output device includes: an image output unit; and a processor setting a screen in the vehicle on the basis of a gaze of an occupant riding in the vehicle, and controlling the image output unit to output an image corresponding to the screen, wherein at least one of a size and a ratio of the image is varied according to the screen.
Abstract:
Disclosed is a vehicle controlling apparatus for controlling a vehicle having a display. The vehicle controlling apparatus includes: a communication unit configured to communicate with the display; and a processor configured to set at least one region among an entire region of the display as a display region, based on a sight line range changed according to a position of a passenger who got on the vehicle, and configured to control the communication unit so that visual information is displayed on the display region.
Abstract:
A robot according to an embodiment of the present invention comprises: at least one wheel for traveling; a water tank in which an accommodating space accommodating water is formed; a water pump connected to the water tank; a water purifier connected to the water pump to purify and discharge water provided from the water tank; and an air cleaner configured to suction and filter air and discharge the filtered air, wherein the water tank is disposed below the water pump, the water purifier, and the air cleaner.
Abstract:
Robot according to an embodiment of the present invention includes a base configured to form a main body; an item receiving unit configured to be detached from an upper portion of the base and to have a receiving space receiving an item to be stored therein; a motor providing a driving force for driving; a communication unit configured to receive a call request; and a processor configured to control the motor to move to a position corresponding to a user based on position information included in the call request, and to control the motor to move to a predefined locker station when the item to be stored is received in the item receiving unit from the user.
Abstract:
A cleaning robot according to an embodiment of the present invention comprises: a traveling motor configured to generate a driving force for traveling; a cleaning module changing unit configured to selectively activate any one of at least one cleaning module; a sensing unit configured to sense characteristics of a floor surface; and a processor configured to perform a cleaning operation of cleaning the floor surface by controlling the cleaning module changing unit to activate any one of the at least one cleaning module based on the sensed characteristics of the floor surface, wherein the processor is configured to: sense characteristics of a contaminant present on the floor surface by using the sensing unit while performing the cleaning operation; and control the cleaning module changing unit to change or maintain the activated cleaning module based on the sensed characteristics of the contaminant.
Abstract:
The present invention relates to a user recognition-based stroller robot and a method for controlling the same, and more particularly, to a technology for detecting and controlling states of a guardian and an infant. The user recognition-based stroller robot comprises: a detection unit configured to recognize or measure at least one of a traveling state of the stroller robot or body structures of an infant inside the stroller robot and a guardian outside the stroller robot; a controller configured to determine whether the stroller robot is controlled according to the traveling state measured by the detection unit and determine a structure change of the stroller robot according to the body structure of at least one of the infant or the guardian; and a driving unit configured to adjust at least one of a display, a belt, a seat, or a handle installed in the stroller robot according to the determination of the controller. According to the present invention, the internal configuration is automatically adjusted through each sensor of the detection unit while the guardian and the infant use the stroller robot, thereby increasing convenience.