Abstract:
A wireless terminal, method, and non-transitory computer-readable storage medium. The wireless terminal includes circuitry configured to receive a wireless signal transmitted from a base station; perform signal intensity measurement of the received wireless signal; receive, via a graphical user interface, section information that identifies a section of a building structure for which the signal intensity measurement is to be performed; and transmit measurement information acquired by the signal intensity measurement of the received wireless signal, base station identification information that indicates a base station of a transmission source of the wireless signal, and the section information. The measurement information is associated with the base station identification information and the section information. The circuitry is further configured to perform the signal intensity measurement of the received wireless signal in response to a predetermined user input operation that is received after the section information.
Abstract:
A user input apparatus is provided with user input means for the user to input data or a command by using the user's human body, and use-form detection means for detecting a form in which the user uses the user input means by the user's human body. A computer connected to the user input apparatus changes the operation of the application being executed by application execution means, according to a detection result obtained by the use-form detection means. Therefore, input operations can be performed without inconvenience even if the user cannot use one hand due to another work.
Abstract:
The invention enables users to virtually attach information to situations in the real world, and also enables users to quickly and easily find out desired information. An IR sensor receives an IR signal transmitted from an IR beacon, and supplies the received signal to a sub-notebook PC. A CCD video camera takes in a visual ID from an object, and supplies the inputted visual ID to the sub-notebook PC. A user inputs, through a microphone, a voice to be attached to situations in the real world. The sub-notebook PC transmits position data, object data and voice data, which have been supplied to it, to a server through a communication unit. The transmitted data is received by the server via a wireless LAN. The server stores the received voice data in a database in correspondence to the position data and the object data.
Abstract:
A user input apparatus is provided with user input means for the user to input data or a command by using the user's human body, and use-form detection means for detecting a form in which the user uses the user input means by the user's human body. A computer connected to the user input apparatus changes the operation of the application being executed by application execution means, according to a detection result obtained by the use-form detection means. Therefore, input operations can be performed without inconvenience even if the user cannot use one hand due to another work.
Abstract:
To perform matching between a user who provides a first person view and a user who views the first person view.An icon indicating a current position of each Body is displayed on a map of a range that is currently specified. A Ghost can select a Body to whom the Ghost desires to perform JackIn by specifying an icon in a desired position by UI operation such as a touch or click. Further, when a keyword for limiting behavior or the like is input to a search field, only Bodies extracted on the basis of the behavior are displayed. Then, when selection is settled, a JackIn request is transmitted from the Ghost to the selected Body.
Abstract:
Provided is a light shielding device including a light shielding wall configured to include a plurality of panels, the light shielding wall being used as a partition of a first space and a second space, the plurality of panels being controllable in either a light transmission state in which light is transmitted or a light shielding state in which light is shielded, an optical path specifying unit configured to specify a predetermined optical path to be passed through the light shielding wall, a panel specifying unit configured to specify a panel on the light shielding wall, the panel being corresponded to a position at which the predetermined optical path specified by the optical path specifying unit passes through the light shielding wall, and a controller configured to control a light transmission state or a light shielding state for the plurality of panels on the light shielding wall.
Abstract:
Provided is a communication apparatus 40 including a positioning unit 421 that obtains position information of a local apparatus by measuring a position of the local apparatus based on signals received from satellites via a communication unit 410, a base station detection unit 422 that obtains base station identification information to identify a base station from the signal received from the base station via the communication unit 410, a history information registration unit 430 that registers first history information containing the position information obtained by the positioning unit 421 with a history information storage unit 440 and also registers second history information containing the base station identification information obtained by the base station detection unit 422 with the history information storage unit 440, and a transmission control unit 450 that transmits the first history information registered with the history information storage unit 440 to an information management apparatus 20 via the communication unit and also transmits the second history information registered with the history information storage unit 440 to the information management apparatus 20 via the communication unit 410.
Abstract:
The invention enables users to virtually attach information to situations in the real world, and also enables users to quickly and easily find out desired information. An IR sensor receives an IR signal transmitted from an IR beacon, and supplies the received signal to a sub-notebook PC. A CCD video camera takes in a visual ID from an object, and supplies the inputted visual ID to the sub-notebook PC. A user inputs, through a microphone, a voice to be attached to situations in the real world. The sub-notebook PC transmits position data, object data and voice data, which have been supplied to it, to a server through a communication unit. The transmitted data is received by the server via a wireless LAN. The server stores the received voice data in a database in correspondence to the position data and the object data.
Abstract:
A playback system includes headphones worn on a user's body and converting an electrical signal into sound and a playback apparatus supplying the electrical signal to the headphones. The headphones include first and second electrodes provided in first and second converters, respectively, so as to be in contact with the user's body. The first converter converts the electrical signal in a right channel into sound. The second converter converts the electrical signal in a left channel into sound. The playback apparatus includes measuring means for measuring a resistance or a capacitance between the first and second electrodes, determination means for determining whether or not the headphones are being worn on the user's body in accordance with the resistance or the capacitance measured by the measuring means, and control means for controlling a state of the playback apparatus in accordance with the determination result of the determination means.
Abstract:
The invention enables users to virtually attach information to situations in the real world, and also enables users to quickly and easily find out desired information. An IR sensor receives an IR signal transmitted from an IR beacon, and supplies the received signal to a sub-notebook PC. A CCD video camera takes in a visual ID from an object, and supplies the inputted visual ID to the sub-notebook PC. A user inputs, through a microphone, a voice to be attached to situations in the real world. The sub-notebook PC transmits position data, object data and voice data, which have been supplied to it, to a server through a communication unit. The transmitted data is received by the server via a wireless LAN. The server stores the received voice data in a database in correspondence to the position data and the object data.