Abstract:
An acoustic user interface apparatus and method can detect physical touch contacting a sensing surface and improve the accuracy of direction recognition of a touch or rubbing without any complicated algorithm. The user interface apparatus and method use one microphone to detect and analyze sound waves which are generated by collisions between bumps formed in a top plate or bottom plate of the interface apparatus and the opposing bottom plate or top plate when a user is touching or rubbing the sensing surface.
Abstract:
A system and a method for controlling a lamp in a vehicle capable of recognizing turn on/off of the lamp in the vehicle when a driver or a passenger enters or exits the vehicle and improving sensitivity quality of the driver or the passenger by entering a breathing mode in which a lamp in the vehicle is repeatedly brightened and darkened at a specific period when the driver or the passenger enters or exits the vehicle and changing a period of a luminance of the lamp in proportion to a speed of the vehicle are provided. The system for controlling a lamp in a vehicle includes: a lamp controlling unit configured to receive a door opening signal or a door closing signal of the vehicle or receive a start on or off signal of the vehicle and to change a mode of the lamp into a standby mode, a breathing mode, or an operating mode; and a lamp configured to be driven by the lamp controlling unit.
Abstract:
A vehicle manipulating system using sound waves includes a friction pad, and a sound wave generation film that generates film sound waves when adhered to the friction pad and moved. A smartphone is configured to control devices in a vehicle using the sound waves generated by the sound wave generation film, in order to control various devices in the vehicle while driving.
Abstract:
An apparatus that senses a minor collision of a vehicle is configured to minimize damage to the vehicle by actuating a brake system of the vehicle upon sensing a scratch of the vehicle by analyzing a sound (e.g., a sound wave signal) generated when a surface of the vehicle is scratched by, for example, a column of a building, the other vehicle, or the like when the vehicle is driven forward or backward at or below a certain speed.
Abstract:
A user interface apparatus using a speaker to control device operations by utilizing a speaker and a method thereof are provided. The user interface apparatus includes a user input pad that forms at least a portion of the exterior of a speaker and is configured to generate an impact sound wave based on an external impact An impact sound wave recognizer is configured to receive feedback of an output signal output via the speaker and separate a reverse current signal due to the impact sound wave included in the feedback signal. In addition, a controller is configured to analyze a waveform of the reverse current signal separated by the impact sound wave recognizer to recognize a user input pattern, and output a control signal that corresponds to the recognized user input pattern. The device operations of various devices may be controlled by tapping or flicking the exterior of a speaker.
Abstract:
An apparatus and method for recognizing a touch of a user terminal are provided. The method includes retrieving, by a controller, an acoustic wave signal according to an input generated from an exterior and analyzing the acoustic wave signal. In addition, the controller is configured to detect a type kind and strength of the acoustic wave signal and adjust the screen data of the output unit to correspond to the detected type and strength of the acoustic wave signal.
Abstract:
S vehicle control apparatus that includes a touch panel configured to be touched by a user and a sound wave generator. The sound wave generator including a plurality of patterns formed in different shapes and heights on the touch panel, and is configured to generate sound waves having unique shapes when the user touches the patterns. A sound wave detection sensor is configured to detect the sound waves generated by the sound wave generator. A controller is configured to receive the sound waves detected by the sound wave detection sensor and output vehicle control signals corresponding to the respective sound waves.
Abstract:
A virtual sensor network system is provided that includes a virtual sensor node that stores sensor data collected from a sensor mounted within a vehicle in time synchronization therewith and provides the stored sensor data in time synchronization therewith, in addition, a master node performs a control on the virtual sensor node and executes an algorithm used in an intelligent vehicle using the sensor data. The master node receives the sensor data stored in the virtual sensor node as the virtual sensor data in time synchronization therewith, without inputting actual sensor data from the sensor mounted within the vehicle when executing the algorithm.
Abstract:
S vehicle control apparatus that includes a touch panel configured to be touched by a user and a sound wave generator. The sound wave generator including a plurality of patterns formed in different shapes and heights on the touch panel, and is configured to generate sound waves having unique shapes when the user touches the patterns. A sound wave detection sensor is configured to detect the sound waves generated by the sound wave generator. A controller is configured to receive the sound waves detected by the sound wave detection sensor and output vehicle control signals corresponding to the respective sound waves.
Abstract:
The present disclosure relates to an apparatus and method for recognizing a user input. The apparatus comprises a sensor configured to sense an acoustic wave signal generated by knocking a surface of a medium, an extractor configured to separate an initial pulse signal from the acoustic wave signal and extract signal characteristic of the separated initial pulse signal, and a controller configured to recognize a knocking gesture based on the signal characteristic extracted by the extractor and generate a corresponding control signal.