171.
    发明专利
    未知

    公开(公告)号:NO20075034L

    公开(公告)日:2007-12-06

    申请号:NO20075034

    申请日:2007-10-05

    Applicant: QUALCOMM INC

    Abstract: The present method and apparatus comprises a communication element comprising a MAC layer that is configured for wireless communication within a sector, wherein said communication element comprises a transmitter, a receiver operably connected to the transmitter, a processor operably connected to the transmitter and the receiver, and memory operably connected to the processor, wherein the communication element is adapted to police data flow, whereby a peak data outflow constraint is applied for each flow across all assigned carriers, select a carrier from a plurality of the assigned carriers for the data flow, and control flow access, whereby a potential allowed transmission power for the data flow on the carrier is determined.

    Cooperative autonomous and scheduled resource allocation for a distributed communication system

    公开(公告)号:NZ552301A

    公开(公告)日:2007-04-27

    申请号:NZ55230104

    申请日:2004-08-03

    Applicant: QUALCOMM INC

    Abstract: An access network that is configured for wireless communication with an access terminal is disclosed. The access network includes a transmitter for transmitting first signals to the access terminal, an antenna for receiving second signals from the access terminal, a processor, memory in electronic communication with the processor, and instructions stored in the memory. The instructions are executable to implement a method comprising estimating steady-state values of autonomous power allocations for a plurality of flows on one or more access terminals, setting current power allocation grants for the plurality of flows equal to the estimated steady-state values, and sending a grant message to each of the one or more access terminals. The grant message sent to a particular access terminal includes a current power allocation grant for the one or more flows on that access terminal.

    Cooperative autonomous and scheduled resource allocation for a distributed communication system

    公开(公告)号:NZ552300A

    公开(公告)日:2007-04-27

    申请号:NZ55230004

    申请日:2004-08-03

    Applicant: QUALCOMM INC

    Abstract: An access network that is configured for wireless communication with an access terminal, where the access terminal includes a flow is disclosed. The access network includes a transmitter for transmitting first signals to the access terminal, an antenna for receiving second signals from the access terminal, a processor, memory in electronic communication with the processor, and instructions stored in the memory where the instructions are executable to implement a method. The method includes the steps of (a) determining whether the flow (1316) is meeting at least one quality of service requirement, (b) if the flow (1316) is not meeting the at least one quality of service requirement, sending a grant message (1342) to the access terminal (1306) where the grant message (1306) includes a current power allocation grant (1374) or an accumulated power allocation grant for the flow (1316), and (c) if the flow (1316) is meeting the at least one quality of service requirement, allowing the flow (1316) to autonomously set its own proper allocation.

    REVERSE LINK TRANSMIT POWER CONTROL IN A WIRELESS COMMUNICATION SYSTEM

    公开(公告)号:CA2634936A1

    公开(公告)日:2007-02-01

    申请号:CA2634936

    申请日:2006-07-21

    Applicant: QUALCOMM INC

    Abstract: In one embodiment, the patent application comprises an apparatus, method and means for controlling power of an access terminal by adjusting a power of at least one secondary reverse link carrier by computing a forward link power differential, computing a reverse link power differential, and adding a power level of a primary reverse link carrier pilot with the forward link power differential and the reverse link power differential. In another embodiment, the patent application comprises an apparatus, method and means for controlling power of an access terminal by adjusting a power of at least one secondary reverse link carrier by computing a forward link power differential, computing a reverse link load differential, and adding a power level of a primary reverse link carrier pilot with the forward link power differential and the reverse link load differential.

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