Abstract:
An electronic device is disclosed. The present electronic device comprises a display, a processor electrically connected with the display so as to control the display, and a memory electrically connected with the processor, wherein the memory includes at least one command, and the processor, by executing at least one command, acquires a plurality of object images corresponding to a plurality of objects in a two-dimensional image, acquires a plurality of three-dimensional modeling images corresponding to the plurality of object images and information related to the plurality of objects by applying the plurality of object images to a plurality of network models, and displays, on the display, the three-dimensional images including the plurality of three-dimensional modeling images on the basis of the information related to the plurality of objects and the location information about the plurality of objects in the two-dimensional image.
Abstract:
The present disclosure relates to a communication method and system for converging a 5th-Generation (5G) communication system for supporting higher data rates beyond a 4th-Generation (4G) system with a technology for Internet of Things (IoT). The present disclosure may be applied to intelligent services based on the 5G communication technology and the IoT-related technology, such as smart home, smart building, smart city, smart car, connected car, health care, digital education, smart retail, security and safety services. According to an embodiment of the present invention, a method for controlling a base station supporting a multi-antenna system may comprise the steps of: generating a plurality of test signals for a plurality of antennas in a modem; controlling the plurality of generated test signals to be fed back to the modem through a plurality of feedback paths which are formed for the plurality of antennas, respectively, and do not affect each other; and identifying the plurality of test signals fed back to the modem, on the basis of the plurality of generated test signals.
Abstract:
A driving module may include a driving source configured to generate power, a gear train that includes a decelerating gear set configured to receive driving power from the driving source and a ring gear attached to one side of the gear train, and a rotary joint that includes at least one planetary gear configured to rotate in response to power received from an output end of the decelerating gear set and to revolve along the ring gear. The driving module may include one or more noise reducing members configured to mitigate noise produced based on interaction between one or more elements of the driving module. The driving module may be included in a motion assistance apparatus, where the driving module drives a module that supports a portion of a user body.
Abstract:
An electronic device performs a method for detecting an external device by using an electric power pattern of the external device. In the method, the electronic device collects power information of the external device, and extracts power pattern information from the collected power information. Additionally, the electronic device compares the extracted power pattern information with previously stored power pattern information, and identifies a type of the external device, based on a comparison result.
Abstract:
Provided is an assisting torque setting apparatus and method, wherein the apparatus is configured to calculate an evaluation value of at least one index based on gait data of a user, set a stable assisting torque based on the evaluation value, set a basic assisting torque corresponding to a gait motion of the user based on the gait data, and set a final assisting torque based on the stable assisting torque and the basic assisting torque.
Abstract:
Provide is an electronic apparatus that includes a communication interface, a memory storing at least one instruction, and a processor configured to execute the at least one instruction to: obtain an image including a person object, obtain a 3D shape model corresponding to the person object included in the image, map a texture of the image to the 3D shape model based on identification information for each area of the 3D shape model, and generate a 3D avatar corresponding to the person object based on the 3D shape model to which the texture of the image is mapped.
Abstract:
A heat exchanger is provided. The heat exchanger includes a target area that is a target for heat exchange; and a flow path structure. The flow path structure includes at least one inlet; at least one outlet; a first flow path connected to each of the at least one inlet and the at least one outlet, and extending along a first side of the target area; and a second flow path connected to each of the at least one inlet and the at least one outlet, and extending along a second side, different from the first side, of the target area.
Abstract:
An electronic device is disclosed. The present electronic device includes a display, a processor electronically connected to the display so as to control the display, and a memory electronically connected to the processor. The memory stores instructions causing the processor to control the display to display a 3D modeling image acquired by applying an input 2D image to a learning network model configured to convert the input 2D image into a 3D modeling image, and the learning network model is obtained by learning using a 3D pose acquired by rending virtual 3D modeling data and a 2D image corresponding to the 3D pose.
Abstract:
A power transmitting device may include an input link provided to rotate with respect to a base, an output link provided to rotate with respect to the base, a first shaft connected to the input link in a direction intersecting an axial direction of the input link, a first connecting link connected to the first shaft, a second shaft connected to the first connecting link in a direction intersecting an axial direction of the first shaft, a second connecting link connected to the second shaft, and a third shaft connected between the second connecting link and the output link in a direction intersecting an axial direction of the second shaft.
Abstract:
The present invention relates to a method and an apparatus for detecting, from a smart plug, an electronic device connected to the smart plug, and more specifically, to a method and an apparatus for detecting a change in an electronic device connected to a smart plug. A method, according to one embodiment of the present invention, is the method for detecting a connected electronic device from the smart plug and comprises the steps of: inspecting whether pre-trained data is present when the an electronic device is connected; inspecting whether the connected electronic device and the pre-trained data match when the pre-trained data is present; a training step of obtaining information on valid power, invalid power, and power factor when the connected electronic device and the pre-trained data do not match; and saving trained data after the training is complete.