Abstract:
Disclosed is a personalized image segmentation device, which includes a user input collector that outputs input information in a second format based on a user input in a first format received from a first external device, a sensing information analyzer that outputs context information based on sensing information received from a second external device, a user semantic information generator that analyzes personalized semantic information based on the input information and the context information and outputs personalized user input information based on the personalized semantic information, a multimodal foundation model that encodes image data and text information respectively to generate feature information corresponding to the image data, and an image-input decoder that detects an object corresponding to the user input on the image data based on the feature information and the personalized user input information.
Abstract:
Provided is a sensory substitution apparatus and method that combines two or more pieces of multi-sense sensory information to be converted into different multi-sense sensory information, in which received pieces of multiple information are combined to suit sensory characteristics of the user's body and efficiently transmitted to a different sensory organ. According to the present invention includes: receiving input sensory information; classifying the input sensory information; calculating an importance of each of individual sensory information; determining a target sense for which part or all of the individual sensory information, of which an importance is calculated, is to be converted into a new sensory signal incongruent with the corresponding individual sense; and converting the input sensory information into target sensory information to be transmitted to the determined target sense which is an organ.
Abstract:
Provided is a method of analyzing multimodal user experience data for providing a psychological stability service, the method including: receiving multimodal user experience data collected on the basis of a user device that is predetermined; analyzing an association between the collected multimodal user experience data to identify whether a user is in a stressful situation; when the stressful situation is identified, analyzing a frequency pattern of the stressful situation of the user; recognizing stress context information about the stressful situation occurring to the user on the basis of the frequency pattern of the stressful situation; and providing the user device with a preemptive psychological stability service on the basis of the stress context information corresponding to the stressful situation.
Abstract:
An apparatus for providing a network data service, comprising: a packet distributor for dividing data inputted through a transmission side network in the unit of a packet and distributing the divided packet data in parallel; an area detection unit for detecting an object in an interest area in the packet data distributed in parallel and performing encryption on the detected object in the interest area; and a data transmission unit for transmitting the packet data encrypted by the area detection unit to a reception side network.
Abstract:
Disclosed are a system and method for reproducing tactile content using spatial information, which enhances a user’s tactile sense of music by converting a sound of music played in a space into tactile sense in real time without any sense of difference between tactile and auditory sense and automatically correcting tactile information by reflecting a user location and spatial characteristics so that performance or image information may be realized as tactile content using spatial information and the user location.
Abstract:
Provided is an apparatus for refining data and improving the performance of a behavior recognition model by reflecting time-series characteristics of a behavior. The apparatus includes: a data pre-processing unit configured to receive training data and real-time data as input, identify a missing value of sensor data, and interpolate the sensor data; a behavior recognition unit configured to, through a behavior recognition model, generate a behavior recognition classification result for the preprocessed real-time data; a data refinement unit configured to correct the behavior recognition classification result to generate a refined dataset; a learning model update unit configured to analyze a similarity of the refined dataset and, based on a result of the analysis, perform learning to generate the behavior recognition model; and an information output unit configured to express a corrected behavior recognition result to a user.
Abstract:
Provided are an apparatus and method for sensory substitution based on depth-time mapping. The apparatus for sensory substitution based on depth-time mapping according to the present invention includes an image segmentation unit configured to generate a plurality of depth images by segmenting three-dimensional (3D) image information based on depth, a sensory substitution unit configured to generate pieces of sensory substitution information by converting at least any one of the plurality of depth images into preset sensory information, a depth-time mapping unit configured to map the sensory substitution information to a time axis based on depth information corresponding to the depth image, and an output unit configured to sequentially output the pieces of sensory substitution information in order mapped to the time axis.
Abstract:
Provided are a sensory substitution control device and method. The sensory substitution device includes a reaction signal collector configured to collect a user's response or reaction signal to a sensory substitution signal received from a sensory substitution device, an environmental information collector configured to collect environmental information of the user who receives the substitution signal, a sensory substitution efficiency analyzer configured to analyze the user's sensory substitution efficiency delivered by the sensory substitution device on the basis of the collected environmental information and generate an adjustment signal for adjusting the substitution signal according to the sensory substitution efficiency, and an adjustment signal transmitter configured to provide a correction signal according to the analyzed environmental information-specific sensory substitution efficiency of the sensory substitution signal to the sensory substitution device.
Abstract:
An apparatus for controlling a screen includes a data reception unit configured to receive data and one or more events to be displayed on a screen; and a user input unit configured to provide input information attributable to manipulation of a user input device. Further, the apparatus for controlling the screen includes a screen control unit configured to determine whether to update or switch the screen based on the events and the input information.