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    • 1. 发明申请
    • EFFICIENT MULTIPROCESSOR SYSTEM AND METHODS THEREOF
    • 有效的多处理器系统及其方法
    • WO2006055282A3
    • 2007-01-25
    • PCT/US2005040040
    • 2005-11-07
    • MOTOROLA INCKHAWAND CHARBELALI RAZIUDDINZAYAS MAYRA
    • KHAWAND CHARBELALI RAZIUDDINZAYAS MAYRA
    • G06F9/44G06F9/45H04L12/28
    • G06F9/5088G06F2209/5022
    • A multiprocessor system (206) having a plurality of processors (304-306), each processor capable of processing at least one queue (404A-404N) of at least one service application, and at least one task (402A-402N) comprising at least one of the at least one queue; and wherein a first processor and a second processor of the plurality of processors is each programmed to delegate (602) a service application from the first processor to a queue of the at least one queue of the second processor, evaluate (604-606) the queue at the second processor according to flow control criteria, process (608) the service application at the second processor upon satisfying the flow control criteria, and reject (610) the service application at the second processor upon failing to satisfy the flow control criteria.
    • 具有多个处理器(304-306)的多处理器系统(206),每个处理器能够处理至少一个服务应用的至少一个队列(404A-404N)以及至少一个任务(402A-402N),包括: 至少一个队列中的至少一个; 并且其中所述多个处理器中的第一处理器和第二处理器被编程为将服务应用从第一处理器委托(602)到第二处理器的至少一个队列的队列,评估(604-606) 根据流控制标准在第二处理器处排队,在满足流控制准则的情况下处理(608)第二处理器处的服务应用,并且在不满足流控制准则时拒绝(610)第二处理器处的服务应用。
    • 2. 发明申请
    • SYSTEM AND METHOD FOR DYNAMIC POWER SAVINGS FOR SHORT RANGE WIRELESS SYSTEMS
    • 用于短距离无线系统动态节电的系统和方法
    • WO2006052560A3
    • 2007-07-19
    • PCT/US2005039543
    • 2005-11-01
    • MOTOROLA INCMARPLES ROBERT AZAYAS MAYRA
    • MARPLES ROBERT AZAYAS MAYRA
    • H04B1/38
    • H04B1/1615H04W24/00H04W28/18H04W52/0251H04W84/10H04W88/06Y02D70/00Y02D70/142Y02D70/144Y02D70/40
    • A method (100) and system (11) of dynamic power savings for a shorter range wireless connection based on service conditions for a longer range wireless connection can include the monitoring (102) a latency requirement for the longer range wireless connection based on service conditions and dynamically modifying (104) a reconnect time for the shorter range wireless connection with a change in the latency requirement for the longer range wireless connection based on change in service conditions. The latency requirement for the longer range wireless connection can be based on changes in communication modes for the longer range wireless connection. The communication modes can be a dispatch audio mode, an interconnect audio mode, or an out of service mode for example. The step of dynamically modifying the reconnect time can optionally include adjusting (106) the reconnect time as service conditions change to meet a most critical timing to be encountered.
    • 基于用于更长距离无线连接的服务条件的用于较短距离无线连接的动态功率节省的方法(100)和系统(11)可以包括基于服务条件监视(102)对较长距离无线连接的等待时间要求 并且基于服务条件的变化,动态地修改(104)针对较短范围的无线连接的重新连接时间,其中针对较长距离的无线连接的等待时间要求的改变。 更长距离无线连接的延迟要求可以基于更长距离无线连接的通信模式的变化。 通信模式可以是例如调度音频模式,互连音频模式或者不在服务模式。 动态修改重新连接时间的步骤可以可选地包括在服务条件改变以调整(106)重新连接时间以满足要遇到的最关键的时刻。