Abstract:
This specification relates to a central control apparatus, which is configured to calculate time-division power usage as predicted power usage, which is consumed by at least one facility in a control area within a specific time section, on the basis of predicted external temperature corresponding to the control area within the specific time section and a time-division model, calculate variable-based degree day (VBDD) daily power usage as predicted daily power usage corresponding to the control area on the basis of the predicted external temperature and a VBDD model, and calculate final power usage as final predicted power usage consumed in the control area within the specific time section on the basis of the time-division power usage and the VBDD daily power usage, and a facility control system including the same.
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:
A signal processing device and a display apparatus for vehicles including the same are disclosed. The signal processing device according to an embodiment of the present disclosure 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, wherein the first virtual machine operates as a server virtual machine, the second virtual machine and the third virtual machine operate as guest virtual machines, and the second virtual machine executes at least one container on a container engine, wherein the container includes an abstraction layer changed based on a platform, an operating system, or an executed application. Accordingly, the container may be efficiently installed and executed.
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:
A container update method in a container-based vehicle system, and a vehicle system are disclosed. According to one embodiment of the present specification, when it is determined that an update is required while a container is running, user data generated while the container is running is stored in a user data registry, and a container image to be updated is received from a cloud server and stored in a system registry. Then, a new container is created by combining the user data with the container image to be updated. In addition, by changing the matching relationship of a management table, a seamless update from an existing container to a new container is possible.
Abstract:
The present disclosure relates to a signal processing device and a vehicle display apparatus including the same. The signal processing device according to an embodiment of the present disclosure includes a processor configured to perform signal processing for displays located in a vehicle, wherein the processor is configured to: display a first image including a first overlay on a first display, transmit the first image by screen sharing, and display a second image of a mirrored image corresponding to the first image on a second display; generate a second overlay different from the first overlay while displaying the first image and the second image; transmit information related to the second overlay by instance copying; and display a second overlay generated based on the information related to the second overlay on top of the first image or the second image. Accordingly, objects may be displayed rapidly and accurately by instance copying during screen sharing.
Abstract:
A signal processing device and a display apparatus for vehicle 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 first virtual machine in the processor is configured to generate a virtual overlay, change the layer sequence or display area of the virtual overlay, and transmit the changed virtual overlay or information regarding the changed virtual overlay to the second or the third virtual machine for displaying the changed virtual overlay on the first display or the second display. Consequently, the display sequence and display area of a plurality of overlays may be changed.
Abstract:
Disclosed are a mobile terminal formed to be wearable on a user's wrist, and a method for controlling the same. The mobile terminal includes: a band formed to be wearable on a user's wrist and to enclose the user's wrist; a first body connected to the band; a second body formed to be detachably mounted to the first body; and a processor provided at the second body, and configured to sense a separated state of the second body from the first body, wherein if the separated second body is mounted to an external device, the processor executes a different function based on a type of the external device.
Abstract:
A vehicle control device includes a communication unit configured to receive location information of a vehicle, a sensing unit, a display unit, and at least one processor that is configured to determine, based on the location information received by the communication unit, that the vehicle has entered an area within a predetermined distance from an intersection at which the vehicle changes a travel direction according to a preset route information. The at least one processor is further configured to detect an object located around the intersection through the sensing unit, and to control the display unit to output a route to an entrance of the intersection based on information related to the object located around the intersection.
Abstract:
A signal processing device of a vehicle and a vehicle communication device including the same according to an embodiment of the present disclosure includes a processor configured to receive data by wire from a plurality of zonal signal processing devices or a communication device and to process the received data, wherein the processor is configured to execute a hypervisor and execute a plurality of virtual machines on the hypervisor, and transmit the data to at least one virtual machine based on physical switching or virtual switching. Accordingly, the received data may be efficiently processed.