Abstract:
An apparatus detecting a proximity touch efficiently identifies a gesture which a user uses in the user's daily life and performs an operation corresponding to the gesture. The apparatus detects a proximity touch of an object and generates a detection signal. The apparatus generates detection information including three-dimensional positional information about the object using the detection signal and generates tracking information by tracking the detection information. The apparatus identifies a gesture corresponding to the tracking information by retrieving the gesture from a storage unit and executes an operation corresponding to the gesture.
Abstract:
Disclosed are a touch gesture recognition apparatus and method that can be, or applied to, both a single-touch system and a multi-touch system. The touch gesture recognition method recognizes touch gestures using the diagonal-line length of a bounding box created based on touch location information and variations in the diagonal-line length. After a gesture is recognized, the recognized gesture is mapped to an input event of a user input device and feedback according to the input event is provided.
Abstract:
A virtual object control method is provided. The virtual object control method includes selecting a gesture to control a virtual object on the basis of motion information of a virtual object control unit. The gesture is related to a user's action to operate the virtual object control unit, and appropriately selected so that a user can intuitively and remotely control the virtual object. Selection criteria may be varied depending on the motion information including at least one of a pointing position, the number of pointed to points, a moving type for the virtual object control unit, and a moving position for the virtual object control unit acquired based on the position information.
Abstract:
Disclosed are a touch gesture recognition apparatus and method that can be, or applied to, both a single-touch system and a multi-touch system. The touch gesture recognition method recognizes touch gestures using the diagonal-line length of a bounding box created based on touch location information and variations in the diagonal-line length. After a gesture is recognized, the recognized gesture is mapped to an input event of a user input device and feedback according to the input event is provided.
Abstract:
A mobile terminal control apparatus and method is disclosed. The mobile terminal control apparatus includes a plurality of touch sensors formed on a rear of the mobile terminal, a touch recognition unit recognizing a touch of a finger sensed by the plurality of touch sensors and displaying a user interface on a front screen of the mobile terminal according to the recognized touch of the finger, and an execution unit recognizing a change in the touch of the finger, and executing the displayed user interface on the basis of the result of the recognition. The mobile terminal may control user interfaces of a mobile terminal without fingers overlapping a screen of the mobile terminal.
Abstract:
An apparatus for and a method of inputting a function of a mobile terminal such as a mobile phone, in which a grip posture of a user who holds the mobile terminal is recognized and a function corresponding to the recognized grip posture is detected. The method includes: recognizing a grip posture of a user who uses the mobile terminal; detecting a function corresponding to the recognized grip posture; and performing the detected function. Accordingly, by considering user's grip postures formed when performing the functions of a mobile terminal such as a mobile phone, specific functions are respectively matched to a plurality of grip postures, a grip posture of a user who is holding the mobile terminal is recognized, and a function corresponding to the recognized grip posture is automatically performed without any operation such as an additional key input operation. Therefore, a complex input unit or input method is not required even when diverse functions are provided by the mobile terminal, and the user can easily and conveniently use the mobile terminal.
Abstract:
Disclosed are an apparatus, method, and medium for providing a user interface for file transmission. The apparatus includes a motion perception (recognition) module perceiving (recognizing) a motion input to the user interface and identifying a position of the perceived (recognized) motion, a motion execution module executing a motion corresponding to the perceived motion and the identified position of the perceived motion and modifying components of the user interface according to the executed motion, and a communication module transmitting a file to a transmission target based on the perceived motion and the identified position of the perceived motion. The components of the user interface may include a file list region, a transmission target region, and an execution region.
Abstract:
Provided is an apparatus and method for controlling a portable terminal. The apparatus includes a contact sensing unit which senses an area of an external surface of the portable terminal contacted by a user as the user holds the portable terminal, a recognizing unit which recognizes a function mode of the portable terminal based on information about the contacted area sensed by the contact sensing unit, and a control unit which changes the portable terminal to a function mode recognized by the recognizing unit. Since a function mode of the portable terminal is controlled according to the way a user holds the portable terminal, convenience of changing a function mode of the portable terminal is provided through a single manipulation.
Abstract:
A mobile terminal control apparatus and method. The mobile terminal control apparatus includes a plurality of touch sensors formed on a rear of the mobile terminal, a touch recognition unit recognizing a touch of a finger sensed by the plurality of touch sensors and displaying a user interface on a front screen of the mobile terminal according to the recognized touch of the finger, and an execution unit recognizing a change in the touch of the finger, and executing the displayed user interface on the basis of the result of the recognition. The mobile terminal may control user interfaces of a mobile terminal without fingers overlapping a screen of the mobile terminal.
Abstract:
A method of controlling the operation of a mobile terminal is provided. By dynamically selecting or setting a specific function of a mobile terminal according to a change in pressure or contact areas sensed by a plurality of touch sensors which cover the mobile terminal, a user can easily select or set a specific function of the mobile terminal according to his or her intention, and easily recognize information displayed on a screen of the mobile terminal.