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    • 3. 发明申请
    • INTELLIGENT DRAINAGE SYSTEM
    • 智能排水系统
    • US20150134126A1
    • 2015-05-14
    • US14075073
    • 2013-11-08
    • INTERNATIONAL BUSINESS MACHINES CORPORATION
    • Leonardo R. AugustoAnibal C. CarvalhoTiago N. SantosPaulo R. VitalJosé R. Ziviani
    • G05D7/06
    • G05D7/0641
    • A method for diverting water flow of a drainage system is provided. The method comprises receiving monitored information from a plurality of sensors of a drainage system. In one aspect, the drainage system includes at least one valve to control water flow of the drainage system, and wherein the plurality of sensors and the at least one valve are communicatively connected to a controller of the drainage system. Moreover, the method comprises analyzing the monitored information of the plurality of sensors to resolve a maximum flow problem of water flow of the drainage system. The method further comprises identifying a path through the drainage system to divert water flow of the drainage system based on the resolved maximum flow problem. The method further comprises controlling a plurality of valves to divert the water flow in the drainage system based on the identified path of the drainage system.
    • 提供了一种用于改变排水系统的水流的方法。 该方法包括从排水系统的多个传感器接收监测信息。 一方面,排水系统包括至少一个用于控制排水系统的水流的阀,并且其中多个传感器和至少一个阀通信地连接到排水系统的控制器。 此外,该方法包括分析多个传感器的监测信息,以解决排水系统的水流的最大流量问题。 该方法还包括识别通过排水系统的路径,以基于解决的最大流量问题转移排水系统的水流。 该方法还包括控制多个阀,以根据识别的排水系统的路径转移排水系统中的水流。
    • 7. 发明申请
    • VIRTUAL COMPUTING POWER MANAGEMENT
    • 虚拟计算电源管理
    • US20160139963A1
    • 2016-05-19
    • US14547417
    • 2014-11-19
    • International Business Machines Corporation
    • Rafael C. S. FolcoBreno H. LeitaoThiago C. RottaTiago N. Santos
    • G06F9/50G06F1/32
    • G06F9/5094G06F1/28G06F1/3203G06F1/3206G06F1/3215G06F1/329Y02D10/24
    • As disclosed herein, a method, executed by a computer, includes comparing a current power consumption profile for a computing task with an historical power consumption profile, receiving a request for a computing resource, granting the request if the historical power consumption profile does not suggest a pending peak in the current power consumption profile or the historical power consumption profile indicates persistent consumption at a higher power level, and denying the request for the computing resource if the historical power consumption profile suggests a pending peak in the current power consumption profile and the historical power consumption profile indicates temporary consumption at the higher power level. Denying the request may include initiating an allocation timeout and subsequently ending the allocation timeout in response to a drop in a power consumption below a selected level. A computer system and computer program product corresponding to the method are also disclosed herein.
    • 如本文所公开的,由计算机执行的方法包括将计算任务的当前功耗曲线与历史功耗曲线进行比较,接收对计算资源的请求,如果历史功耗曲线未提示则授予该请求 当前功耗曲线或历史功耗曲线中的待决峰值表示在较高功率水平下的持续消耗,如果历史功耗曲线建议当前功耗曲线中的未决峰值,则拒绝对计算资源的请求 历史功耗曲线表示在较高功率水平下的临时消耗。 拒绝该请求可以包括启动分配超时并且随后响应于低于所选级别的功率消耗的下降而终止分配超时。 本文还公开了与该方法对应的计算机系统和计算机程序产品。
    • 10. 发明申请
    • NETWORK TRAFFIC PROCESSING
    • 网络交通处理
    • US20160139970A1
    • 2016-05-19
    • US14566739
    • 2014-12-11
    • International Business Machines Corporation
    • Murilo O. AraujoLeonardo R. AugustoRafael C. S. FolcoBreno H. LeitaoTiago N. Santos
    • G06F9/54
    • G06F9/542G06F9/546G06F13/4027G06F13/4221
    • As disclosed herein a method, executed by a computer, for providing improved multi-protocol traffic processing includes receiving a data packet, determining if a big processor is activated, deactivating a little processor and activating the big processor if the big processor is not activated and an overflow queue is full, and deactivating the big processor and activating the little processor if the big processor is activated and a current throughput for the big processor is below a first threshold or a sustained throughput for the big processor remains below a second threshold. The big and little processors may be co-located on a single integrated circuit. An overflow queue, managed with a token bucket algorithm, may be used to enable the little processor to handle short burst of data packet traffic. A computer program product and an apparatus corresponding to the described method are also disclosed herein.
    • 如本文所公开的,由计算机执行的用于提供改进的多协议业务处理的方法包括接收数据分组,确定大处理器是否被激活,如果大处理器未被激活,则停用小处理器并激活大处理器, 溢出队列已满,并且如果大处理器被激活并且大处理器的当前吞吐量低于第一阈值或大处理器的持续吞吐量保持低于第二阈值,则停用大处理器并激活小处理器。 大型和小型处理器可以位于单个集成电路上。 使用令牌桶算法进行管理的溢出队列可用于使小处理器能够处理短突发数据包流量。 本文还公开了与所述方法对应的计算机程序产品和装置。