Abstract:
A method and an apparatus are provided for operating an electronic device. The electronic device recognizes biometric data of a user that is input to the electronic device. Information related to an input error of the biometric data based on the recognition of the biometric data is presented to the user.
Abstract:
A terminal supporting control of an output of a screen of a flexible display is provided. The terminal includes a flexible display configured such that at least a portion of the flexible display is deflected or folded, a sensor unit for collecting a sensor signal for detecting a location where the flexible display is deflected or folded, and a controller for controlling to determine a specific area of a functional screen or at least one functional screen from among a plurality of functional screens which are output before the flexible display is deflected or folded as a content viewing area when an input event is received, and for outputting the determined content viewing area in a specific display area of the folded flexible display.
Abstract:
An electronic device configured to perform speaker verification on a voice input to determine whether the voice input matches a voice of an enrolled speaker, based on determining that the voice input does not match the voice of the enrolled speaker, perform first speech recognition on the voice input based on a first automatic speech recognition (ASR) model, and based on determining that the voice input matches the voice of the enrolled speaker, perform second speech recognition on the voice input based on a sequence summarizing neural network (SSN) and a second ASR model.
Abstract:
Disclosed are an electronic device for controlling at least one input device and a control method thereof. An electronic device, according to an embodiment of the disclosure, may: acquire identification information of an external display device based on the electronic device being operably connected to the external display device; acquire identification information of at least one input device from the at least one input device located within a threshold proximity of the electronic device; compare the acquired identification information of the at least one input device with reference information of the input device associated with the identification information of the external display device and stored in the memory; and connect to the at least one input device based on a result of the comparison.
Abstract:
An electronic device that provides user experience for controlling at least one ultra-wideband (UWB) device, and a control method are provided. The electronic device includes at least one antenna, a touch screen display, memory storing one or more computer programs, and one or more processors communicatively coupled to the at least one antenna, the memory, and the touchscreen display, wherein the one or more computer programs include computer-executable instructions that, when executed by the one or more processors, cause the electronic device to receive an ultra-wideband (UWB) signal from an external electronic device through the at least one antenna, in response to reception of the UWB signal, compute an orientation angle of the electronic device with respect to the external electronic device, a distance between the external electronic device and the electronic device, and an orientation time, when each of the calculated orientation angle, the distance, and the orientation time satisfies a first predesignated criterion, display a user interface corresponding to the external electronic device, and when any one of the calculated orientation angle, the distance, and the orientation time does not satisfy the first criterion, display a user interface corresponding to the external electronic device.
Abstract:
An electronic device includes a memory storing instructions; and a processor electrically connected to the memory and configured to execute the instructions to: receive user utterance data; obtain an utterance-domain data set including candidate utterance data that is based on the user utterance data; generate transformed utterance data associated with the user utterance data based on a language model and the utterance-domain data set; and provide a response corresponding to the user utterance data, based on the transformed utterance data. The utterance-domain data set may include at least one candidate utterance data paired with each of a plurality of domains. Each domain of the plurality of domains corresponds to a different operation or function.
Abstract:
An electronic device includes a microphone, a memory and at least one processor. The at least one processor is configured to acquire utterance data corresponding to a voice of a user through the microphone, determine an intent and provide content to the user based on the intent. When intent determination fails, then one or more models are updated using text obtained from the utterance data. The intent determination may fail when there is no verb (predicate) in the user utterance. The models are updated by searching for named entities and determining domains to be used for the model updates. The domains are determined based on categories. The categories are found using a named entity search (NES). Examples of categories are music artists, music albums, movie titles, TV program channels, video clip channels, radio programs, and podcast titles.
Abstract:
A processor is configured to identify a specified event based on data output from one or more sensors. The processor is configured to, in response to identifying occurrence of the specified event, transmit, to an external electronic device connected via a communication circuit, a first signal requesting information associated with both the specified event and a virtual space provided by the external electronic device. The processor is configured to provide, by controlling the display based on receiving a second signal corresponding to the first signal from the external electronic device, information included in the second signal in a state that is executable by a second application different from the first application for displaying the virtual space.
Abstract:
An electronic device includes a communication circuit, and at least one processor connected to the communication circuit. The at least one processor may be configured to broadcast a device identification (ID) of the electronic device and an Internet protocol (IP) address of the electronic device through the communication circuit. The at least one processor may be configured to receive a token encrypted by an external electronic device and data of the external electronic device through the communication circuit. The at least one processor may be configured to decrypt the encrypted token by using a private key of the electronic device. The at least one processor may be configured to transmit the data of the external electronic device to a server in a cloud by using the decrypted token through the communication circuit.
Abstract:
A server for providing content shared to an object is provided. The server is configured to establish communication between a first electronic device of a user and a second electronic device of another user and provide, to the first electronic device and the second electronic device, a virtual space and an object in the virtual space. The server selects, based on an input of the user, at least one content shared to the object in the virtual space by the other user of the second electronic device entering the same virtual space as the first electronic device. The server activates the object to identically output the selected content to at least one electronic device entering the virtual space. Based on the second electronic device leaving the virtual space, the server stops providing the content shared by the other user.