Dynamic payload-size threshold for triggering an auxiliary...

Multiplex communications – Data flow congestion prevention or control – Flow control of data transmission through a network

Reexamination Certificate

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Details

C370S236000, C370S328000, C370S331000, C370S470000

Reexamination Certificate

active

07826370

ABSTRACT:
A method and system is disclosed for dynamic adjustment of threshold payload size for triggering an auxiliary pilot. An access terminal in a wireless communication system that includes a base station may operate in a state in which (i) the access terminal transmits a primary beacon signal on an air interface communication link to the base station, and, (ii) upon a condition that the access terminal will transmit a packet having a size larger than a threshold packet size, the access terminal activates and transmits a secondary beacon signal on the air interface communication link to the base station concurrently with transmission of the primary beacon signal. While operating in the state, upon receiving a first particular sequence of power-control commands from the base station, the access terminal will decrease the threshold packet size by a decremental amount. Also while operating in the state, upon receiving a second particular sequence of power-control commands from the base station, the access terminal will increase the threshold packet size by an incremental amount.

REFERENCES:
patent: 2004/0218559 (2004-11-01), Kim et al.
Unpublished U.S. Appl. No. 12/243,070 entitled “Variable Auxiliary Pilot Trigger and Performance” filed Oct. 1, 2008 in the name of Debasish Sarkar et al.
Unpublished U.S. Appl. No. 12/569,120, entitled “Enhanced Reverse Link Auxiliary Pilot Trigger” filed Sep. 29, 2009 in the name of Hemanth Pawar et al.
Unpublished U.S. Appl. No. 12/478,827, entitled “Reverse Noise Rise Based Payload Threshold Determination for Auxiliary Pilot Trigger” filed Jun. 5, 2009 in the name of Siddharth Oroskar et al.
Unpublished U.S. Appl. No. 12/634,818, entitled “Auxiliary Pilot Trigger Based On Latency” filed Dec. 10, 2009 in the name of Debasish Sarkar et al.

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