Abstract:
A method for operating a plurality of flexible displays to implement an interactive operation among the plurality of flexible displays is provided. The method is used between the plurality of flexible displays and a system control platform. Each flexible display is configured with a plurality of light sensors and a plurality of sensors and a processor. The method includes: quantifying, by each light sensor, a external luminosity value received by each flexible display; quantifying, by each sensor, a sensor-measuring value received by each flexible display; generating and transmitting, by the processor coupled to the light sensors and the sensors, luminosity information and sensor information according to the external luminosity values and the sensor-measuring values; and receiving, by the information platform, the luminosity information and the sensor information, and implements the interactive operation among the plurality of flexible displays between the plurality of flexible displays according to the sensor information.
Abstract:
A system of location push notification service is provided. The system comprises a Bluetooth device, a server and a user mobile device. The server stores a location data and a standard angle corresponding to the Bluetooth device. The user mobile device linked to the server via a communication network has an electronic compass and an acceleration sensor for obtaining a detection angle, and a signal intensity detection module for obtaining the intensity of the Bluetooth signal. The user mobile device transmits the detection angle and the intensity of the Bluetooth signal to the server when the user mobile device senses the Bluetooth signal. The server obtains a relative angle of the user mobile device corresponding to the Bluetooth device, and determines a service information pushed from the server to the user mobile device according to the relative angle and variations in the intensity of the Bluetooth signal.
Abstract:
A signal transmitter with adjustable signal power includes a housing, a first adjustable metal shielding layer and a circuit board. The first adjustable metal shielding layer is disposed within the housing. The area of the first adjustable metal shielding layer consists of a first shielding area and a first un-shielding area. The first shielding area and the first un-shielding area are adjustable. The circuit board is disposed within the housing, and is located below the first adjustable metal shielding layer. The circuit board is electrically connected with the first adjustable metal shielding layer, and includes a signal emission chip. The signal emission chip is configured for adjusting signal emission power to emit a signal according to the first un-shielding area of the first adjustable metal shielding layer. A message generating system and a signal power adjusting method are disclosed herein as well.
Abstract:
An information processing system includes a register module, a determining module, and a transfer module. The register module is configured to store event data corresponding to a specific QR code. The determining module is configured to obtain the event data, and to communicate with a mobile device, so as to determine whether application programs on the mobile device includes a first application program which is corresponding to any one of the event data. If yes, the determining module transmits launch information to make the mobile device lunch the first application program. If not, the determining module transmits install information to make the mobile device install the first application program. The transmitting module is configured to transmit a message corresponding to the first application program to the mobile device, so that the first application program launched by the mobile device displays the message.
Abstract:
A system of location push notification service is provided. The system comprises a Bluetooth device, a server and a user mobile device. The server stores a location data and a standard angle corresponding to the Bluetooth device. The user mobile device linked to the server via a communication network has an electronic compass and an acceleration sensor for obtaining a detection angle, and a signal intensity detection module for obtaining the intensity of the Bluetooth signal. The user mobile device transmits the detection angle and the intensity of the Bluetooth signal to the server when the user mobile device senses the Bluetooth signal. The server obtains a relative angle of the user mobile device corresponding to the Bluetooth device, and determines a service information pushed from the server to the user mobile device according to the relative angle and variations in the intensity of the Bluetooth signal.