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    • 3. 发明专利
    • DE60228870D1
    • 2008-10-23
    • DE60228870
    • 2002-10-31
    • QUALCOMM INC
    • QUICK ROY FRANKLINHO SAI YIU
    • H04L9/08H04L9/06H04L29/06H04W12/00H04W12/04
    • In a communication system (100), a method and apparatus provides for message integrity regardless of the operating version of an authentication center (198) or an interface (197) between the authentication center (198) and a mobile switching center (199). The method and apparatus include generating a cellular message encryption algorithm (CMEA) key, and generating a CMEA-key-derived integrity key (CIK) based on the CMEA key for message integrity between a mobile station and a base station. The mobile station transmits a registration message to the base station, and determines an operating version of the authentication center (198) in communication with the base station based on whether the mobile station receives a registration accepted order or some elements of an authentication vector from the base station. The CIK is generated based on the CMEA key, if the mobile station receives a valid registration accepted order from the base station.
    • 5. 发明专利
    • BRPI0810984A2
    • 2015-01-27
    • BRPI0810984
    • 2008-05-01
    • QUALCOMM INC
    • HO SAI YIUDAMNJANOVIC ALEKSANDAR
    • H04B1/16
    • Systems and methodologies are described that facilitate operating an access terminal in an LTE based wireless communication environment utilizing extended microsleep. While in non-DRX mode, an access terminal can operate in on state for a first period of time and in extended microsleep state for a second period of time. Further, the first and second periods of time can form a repeating pattern where these periods of time alternate. Thus, the access terminal can turn on its receiver for the first period of time (e.g., decode downlink information while in on state) and turn off its receiver for the second period of time (e.g., inhibit decoding of downlink information while in extended microsleep state). Further, the first period of time in the repeating pattern can be one TTI (e.g., 1 ms) and the second period of time in the repeating pattern can be a plurality of TTIs (e.g., 5 ms).