Abstract:
A signal processing device and a display apparatus for vehicles including the same are disclosed. The signal processing device includes a processor configured to perform signal processing for a display located in a vehicle, wherein the processor is configured to execute first to third virtual machines on a hypervisor in the processor, the second virtual machine is operated for a first display, the third virtual machine is operated for a second display, and the first virtual machine in the processor is configured to share at least some of data with the second virtual machine and the third virtual machine for processing of divided data. Consequently, the plurality of virtual machines for the plurality of displays in the vehicle may divide and process data.
Abstract:
In an embodiment of the present disclosure, provided are an air conditioner and a control method thereof. The air conditioner in an embodiment of the present disclosure comprises a wind direction controller that changes the direction of air being discharged, an air volume controller that changes the amount of air being discharged, a camera that obtains an image of indoor space and provides an indoor space image, and a control unit that controls the wind direction controller and the air volume controller, wherein the control unit finds indoor space information based on the indoor space image, and controls at least one of the wind direction controller and the air volume controller based on the indoor space information.
Abstract:
A home appliance, a home appliance system, and a control method thereof are disclosed. Transmission and reception of data are performed between the terminal and the home appliance using near field communication (NFC), thereby easily checking information of the home appliance. In addition, operation of the home appliance is easily set and changed through an application installed in the terminal and information regarding the home appliance received from the home appliance is displayed through the terminal such that a user checks various kinds of information regarding the home appliance, thereby greatly improving user convenience.
Abstract:
A display apparatus for vehicle is disclosed. The display apparatus includes a first display and a second display located in a vehicle, a signal processing device including a processor configured to perform signal processing for the first display and the second display, and a second signal processing device including a second processor configured to perform signal processing for a third display, wherein the processor in the signal processing device is configured to execute first to third virtual machines on a hypervisor in the processor, and, in response to the signal processing device being operated as a master signal processing device, the first virtual machine in the processor is configured to share at least some of data with the second signal processing device for divided processing of data. Consequently, the plurality of signal processing devices for the plurality of displays in the vehicle may divide and process data.
Abstract:
A signal processing device and a display apparatus for vehicles including the same are disclosed. The signal processing device includes a processor configured to perform signal processing for a display located in a vehicle, wherein the processor is configured to execute first to third virtual machines on a hypervisor in the processor, the second virtual machine is operated for a first display, the third virtual machine is operated for a second display, and the first virtual machine in the processor is configured to execute a camera interface to receive camera data from an external camera device and a camera manager to register a request for transmission of camera data from the second virtual machine or the third virtual machine and to transmit the camera data to the second virtual machine or the third virtual machine based on registered request. Consequently, data received from the outside may be efficiently shared.
Abstract:
An air conditioner includes: an indoor unit including a blowing unit to discharge air; an outdoor unit supplying compressed refrigerant to the indoor unit, to exchange heat with the air before discharge. The air conditioner also includes at least one computer memory operably connectable to at least one processor and storing instructions that, when executed, perform operations that include: generating at least one parameter in a first operation mode, which is operated only within a preset time range; controlling, based on an operation mode information, at least one of (i) the blowing unit to change a wind direction and an air volume, or (ii) the outdoor unit; and switching to a second operation mode after a time period of operation in the first operation mode. The operation mode information includes at least one result factor obtained from at least one machine-learning network.
Abstract:
A signal processing device and a display apparatus for vehicles including the same are disclosed. The signal processing device includes a processor configured to process a signal for a display mounted in a vehicle, wherein the processor is configured to execute first to third virtual machines on a hypervisor in the processor, the second virtual machine is operated for a first display, the third virtual machine is operated for a second display, and the first virtual machine in the processor is configured to control a shared memory based on the hypervisor for transmission of identical data to the second virtual machine and the third virtual machine. Consequently, it is possible for a plurality of displays in the vehicle to display identical images in a synchronized state.
Abstract:
An air conditioner and a method for operating an air conditioner are provided. The air conditioner may include a case having a space formed therein and an open bottom; a panel disposed under the case and having an inlet and a plurality of outlets disposed around a circumference of the inlet; a fan disposed in the case and configured to generate an airflow from the inlet to the plurality of outlets; an airflow direction controller disposed at the plurality of outlets and configured to control an airflow direction of air flowing through the plurality of outlets in a plurality of directions; a camera disposed at one side of the panel and directed toward an indoor space; and a controller configured to control the airflow direction controller based on images corresponding to the indoor space and captured by the camera. The controller may be configured to determine an activity level of an occupant for each of a plurality of areas of the indoor space based on a plurality of images corresponding to the indoor space; determine a direction of air discharged from the plurality of outlets based on the determined activity level; and control the airflow direction controller according to the direction of the air which is determined for the plurality of outlets.
Abstract:
The present invention relates to a method for controlling an air conditioner by recognizing a zone on the basis of artificial intelligence, a server and an air conditioner, and the air conditioner according to one embodiment of the present invention comprises: a controller for generating first space classification data for dividing a blowing zone into two or more on the basis of human body sensing data generated by a vision module and an image; and a communication unit for transmitting the human body sensing data to a server and receiving second space classification data from the server, wherein the controller controls the operation of the air conditioner by comparing the first space classification data and the second space classification data and dividing the blowing zone into a concentrated blowing zone and a non-concentrated blowing zone.
Abstract:
Disclosed is a display apparatus including a first display and a second display located in a vehicle, a signal processing device including a processor for the first display and the second display, and a second signal processing device for a third display, wherein the processor executes first to third virtual machines on a hypervisor, and the first virtual machine is configured to transmit a remote processing request from at least one of the second virtual machine or the third virtual machine to the second signal processing device, receive image data processed by the second signal processing device in response to the remote processing request, and display an image related to the received image data on at least one of the first display or the second display.