Abstract:
A head mount display and method for outputting an output of the same are discussed. The method includes outputting a first task from the head mount display, the first task including at least one of a first video output and a first audio output; recognizing a portable device, which outputs a second task including at least one of a second video output and a second audio output; determining whether the first and second video outputs are swapping targets, if the portable device is recognized; swapping the first video output with the second video output if the first and second video outputs are determined to be swapping targets; determining whether the first and second audio outputs are swapping targets, if the portable device is recognized; and swapping the first audio output with the second audio output if the first and second audio outputs are determined to be swapping targets.
Abstract:
A method for controlling a portable device is provided. The method includes detecting bending of the portable device and determining whether to perform motion sensing correction due to the bending; acquiring a motion sensing correction factor for performing the motion sensing correction due to the bending; performing motion sensing correction of at least one motion sensor using the motion sensing correction factor; and controlling the portable device according to the corrected motion sensing.
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:
The present disclosure relates to a vehicular electronic device including a power supply configured to supply power, an interface configured to receive HD map data on a specific area from a server through a communication device, a first processor configured to continuously generate electronic horizon data on a specific area based on the high-definition (HD) map data in the state of receiving the power, and a second processor configured to support the first processor based on the processing load of the first processor.
Abstract:
The present disclosure provides a path providing device for providing a path to a vehicle, and a communication system including the same. The path providing device includes a communication unit configured to receive a high-definition map, formed of a plurality of tiles, from a server in tile units, and a processor configured to generate forward path information using the high-definition map, the forward path information guiding a path up to a destination when the destination is set and guiding a path on which the vehicle is most likely to travel, wherein the processor calculates a communication speed for the server using a data reception amount received from the server compared with a data request amount requested to the server, and updates the forward path information based on the communication speed.
Abstract:
The present invention relates to an apparatus for providing a map which is mounted on a vehicle to provide map data to a plurality of electric components equipped in the vehicle. The apparatus for providing a map comprises: a communication unit for communicating with the electric components and receiving different maps from each of a plurality of servers; and a processor for selecting at least one of the servers based on driving information of the vehicle, and controlling the communication unit so that a map received from the selected server is provided to the electric components as the map data.
Abstract:
An ion generating device, a method for manufacturing an ion generating device, and an air conditioner are provided. The ion generating device may include a discharge electrode that generates ions, and a power supply that applies power to the discharge electrode. The discharge electrode may include a support formed of a conductor, and a discharge pin formed to protrude from a surface of the support and having a tip. The discharge pin may include nickel (Ni).
Abstract:
Disclosed herein is a user interface apparatus for vehicles including light sources, a touch sensor to sense touch, light guides to transfer light generated by the light sources, and a top cover to cover the light sources, the touch sensor and the light guides and to transmit light emitted from the light guides to the interior of a vehicle. The light sources includes a first light source and at least one second light sources, the light guides includes first and second light guides to receive light generated by the first light source and to transfer the light to first and second regions and at least one third light guide configured to receive light generated by the at least one second light source and to transfer the light to a third region, and light generated by the first light source is dispersed and provided to the first and second light guides.
Abstract:
A mobile terminal and a control method thereof are disclosed. A mobile terminal according to an embodiment of the present invention comprises: a sound output unit which outputs a sound corresponding to reproduction of a content; a setting unit which includes a plurality of noise blocking levels and sets at least one noise blocking level on the basis of a user input; and a control unit which, when the content is reproduced, blocks surrounding noise according to the set noise blocking level and, when a specific event is detected, adjusts the already set noise blocking level such that the degree of surrounding noise blocking is changed according to the detected specific event.