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    • 7. 发明授权
    • Multi-core processor system and control method
    • 多核处理器系统及控制方法
    • US09547576B2
    • 2017-01-17
    • US14151421
    • 2014-01-09
    • FUJITSU LIMITED
    • Hiromasa YamauchiKoichiro YamashitaTakahisa SuzukiKoji KuriharaToshiya Otomo
    • G06F11/34G06F9/50
    • G06F11/3409G06F9/505G06F2209/501G06F2209/5021
    • A multi-core processor system includes a multi-core processor that has plural core groups; and a storage device that stores a constraint on execution time for each application. A first identified core of the multi-core processor is configured to identify a constraint on execution time of a given application that is among the applications and for which an invocation instruction is received; determine whether the identified constraint meets a performance drop condition; assign the given application to a predetermined core of the multi-core processor, upon determining that the identified constraint meets the performance drop condition; and notify a second identified core of a core group among the core groups, of an assignment instruction for the given application, upon determining that the identified constraint does not meet the performance drop condition.
    • 多核处理器系统包括具有多个核心组的多核处理器; 以及存储装置,其对每个应用程序存储对执行时间的约束。 多核处理器的第一识别核心被配置为识别对应用中的给定应用的执行时间的约束,并且其中接收到调用指令; 确定所识别的约束是否满足性能下降条件; 在确定所识别的约束满足性能下降条件时,将给定应用分配给多核处理器的预定核心; 并且在确定所识别的约束不满足性能下降条件时,通知所述核心组中的核心组的第二识别核心,给定应用的分配指令。
    • 10. 发明授权
    • Communications apparatus, system, and communications method
    • 通信设备,系统和通信方法
    • US09467947B2
    • 2016-10-11
    • US14633488
    • 2015-02-27
    • FUJITSU LIMITED
    • Hiromasa YamauchiKoichiro YamashitaTakahisa SuzukiKoji KuriharaToshiya OtomoYuta Teranishi
    • G08C17/00H04W52/02H04W84/18
    • H04W52/0258H04W52/0277H04W84/18Y02D70/00
    • A sensor node executes any one among a first operation by which another sensor node is requested to execute data process and if the request is not accepted the sensor node starts executing the data processing after waiting for charging and a second operation by which the sensor node starts executing the data processing after waiting for charging, without requesting the data processing to be executed. The sensor node compares an expected value of a first time that elapses until execution is started by the sensor node or the other sensor node when the first operation is executed, and a second time that elapses until execution is started by the sensor node when the second operation is executed. Based on the comparison result, the sensor node executes among the first operation and the second operation, the operation for which the time that elapses until execution is started is shorter.
    • 传感器节点执行另一传感器节点执行数据处理的第一操作中的任一个,并且如果请求不被接受,则传感器节点在等待充电之后开始执行数据处理,并且传感器节点开始执行第二操作 在等待充电之后执行数据处理,而不需要执行数据处理。 传感器节点比较第一次经过的期望值,直到当执行第一操作时由传感器节点或另一个传感器节点执行执行,并且在第二次传播节点执行第二次时,传感器节点开始执行第二次 执行操作。 基于比较结果,传感器节点在第一操作和第二操作之间执行,直到执行开始经过的时间的操作较短。