Abstract:
PROBLEM TO BE SOLVED: To provide a method and system for flow control between a base station controller and a base transceiver station. SOLUTION: According to a disclosed embodiment, a flow indication counter is incremented each time a data packet is transmitted from a buffer (408). When the number of data packets transmitted equals or exceeds a threshold number (410), a flow indication message comprising the buffer window size is generated and transmitted to the base station controller (412). Further, flow indication messages can be generated and transmitted every threshold time interval, independently of the number of data packets transmitted to ensure that flow indication messages are sent at least every preset time interval. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
According to a disclosed embodiment, a flow indication counter is incremented each time a data packet is transmitted from a buffer (408). When the number of data packets transmitted equals or exceeds a threshold number (410), a flow indication message comprising the buffer window size is generated and transmitted to the base station controller (412). Further, flow indication messages can be generated and transmitted every threshold time interval, independently of the number of data packets transmitted to ensure that flow indication messages are sent at least every preset time interval. Moreover, a system for flow control can be constructed comprising a flow indication counter module (302) configured to provide an updated number of data packets transmitted. The system further comprises a window size monitoring module (306) which determines the buffer window size and a message generating module which generates a flow indication message comprising the buffer window size (310).
Abstract:
According to a disclosed embodiment, a flow indication counter is incremente d each time a data packet is transmitted from a buffer (408). When the number of data packets transmitted equals or exceeds a threshold number (410), a flow indication message comprising the buffer window size is generated and transmitted to the base station controller (412). Further, flow indication messages can be generated and transmitted every threshold time interval, independently of the number of data packets transmitted to ensure that flow indication messages are sent at least every preset time interval. Moreover, a system for flow control can be constructed comprising a flow indication counter module (302) configured to provide an updated number of data packets transmitted. The system further comprises a window size monitoring module (306) which determines the buffer window size and a message generating modul e which generates a flow indication message comprising the buffer window size (310).
Abstract:
According to a disclosed embodiment, a flow indication counter is incremented each time a data packet is transmitted from a buffer (408). When the number of data packets transmitted equals or exceeds a threshold number (410), a flow indication message comprising the buffer window size is generated and transmitted to the base station controller (412). Further, flow indication messages can be generated and transmitted every threshold time interval, independently of the number of data packets transmitted to ensure that flow indication messages are sent at least every preset time interval. Moreover, a system for flow control can be constructed comprising a flow indication counter module (302) configured to provide an updated number of data packets transmitted. The system further comprises a window size monitoring module (306) which determines the buffer window size and a message generating module which generates a flow indication message comprising the buffer window size (310).
Abstract:
According to a disclosed embodiment, a flow indication counter is incremented each time a data packet is transmitted from a buffer (408). When the number of data packets transmitted equals or exceeds a threshold number (410), a flow indication message comprising the buffer window size is generated and transmitted to the base station controller (412). Further, flow indication messages can be generated and transmitted every threshold time interval, independently of the number of data packets transmitted to ensure that flow indication messages are sent at least every preset time interval. Moreover, a system for flow control can be constructed comprising a flow indication counter module (302) configured to provide an updated number of data packets transmitted. The system further comprises a window size monitoring module (306) which determines the buffer window size and a message generating module which generates a flow indication message comprising the buffer window size (310).
Abstract:
According to a disclosed embodiment, a flow indication counter is incremented each time a data packet is transmitted from a buffer (408). When the number of data packets transmitted equals or exceeds a threshold number (410), a flow indication message comprising the buffer window size is generated and transmitted to the base station controller (412). Further, flow indication messages can be generated and transmitted every threshold time interval, independently of the number of data packets transmitted to ensure that flow indication messages are sent at least every preset time interval. Moreover, a system for flow control can be constructed comprising a flow indication counter module (302) configured to provide an updated number of data packets transmitted. The system further comprises a window size monitoring module (306) which determines the buffer window size and a message generating module which generates a flow indication message comprising the buffer window size (310).
Abstract:
According to a disclosed embodiment, a flow indication counter is incremented each time a data packet is transmitted from a buffer (408). When the number of data packets transmitted equals or exceeds a threshold number (410), a flow indication message comprising the buffer window size is generated and transmitted to the base station controller (412). Further, flow indication messages can be generated and transmitted every threshold time interval, independently of the number of data packets transmitted to ensure that flow indication messages are sent at least every preset time interval. Moreover, a system for flow control can be constructed comprising a flow indication counter module (302) configured to provide an updated number of data packets transmitted. The system further comprises a window size monitoring module (306) which determines the buffer window size and a message generating module which generates a flow indication message comprising the buffer window size (310).
Abstract:
Methods, systems and devices for locating a wireless identity transmitter (110) with a central server (120) connected with one or more proximity broadcast receivers (138, 142), such as stationary receivers (142) or mobile devices operating as wireless receivers (138). The wireless identity transmitter (110) may be a device configured to broadcast messages, such as through Bluetooth ® advertisements, including an identification code. When within proximity, a proximity broadcast receiver (138, 142) may receive broadcast messages from the wireless identity transmitter (110) and relay location information along with the wireless identity transmitter's identification code to a central server (120) as sighting messages. The proximity broadcast receiver's own location may provide an approximate location for the wireless identity transmitter. The central server may process sighting messages, including signal strength information, to accurately locate the wireless identity transmitter. The central server may transmit data to third-party devices when receiving sightings messages.