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    • 3. 发明申请
    • USER INPUT TRIGGERED DEVICE POWER MANAGEMENT
    • 用户输入触发的设备电源管理
    • US20120284543A1
    • 2012-11-08
    • US13099077
    • 2011-05-02
    • Changjiu XianBruce L. Worthington
    • Changjiu XianBruce L. Worthington
    • G06F1/32G06F1/00
    • G06F1/3203G06F1/3206
    • Techniques for user input triggered device power management are described that enable user inputs and activities to cause selective changes in power states for a device. Power can be boosted to a high power state to improve responsiveness for designated inputs and/or activities. When responsiveness is deemed less important in connection with particular inputs and/or activities, a low power state can be set to reduce energy consumption. In at least some embodiments, selectively switching between power states includes detecting various user inputs at a device and filtering the inputs to select power states associated with the user inputs. The device can then be operated in a selected power state until a transition to a different power state is triggered by occurrence of designated events, such as running of a set time interval, further user input, and/or completion of user activity.
    • 描述用于用户输入触发的设备电源管理的技术,其使得用户输入和活动能够引起对设备的功率状态的选择性改变。 电力可以提升到高功率状态,以提高对指定投入和/或活动的响应能力。 当响应性被认为与特定输入和/或活动相关的重要性较低时,可以设置低功率状态以降低能量消耗。 在至少一些实施例中,选择性地在功率状态之间切换包括检测设备处的各种用户输入并且过滤输入以选择与用户输入相关联的功率状态。 然后可以以所选择的功率状态操作设备,直到通过发生指定事件(例如运行设定的时间间隔,进一步的用户输入和/或用户活动的完成)触发到不同功率状态的转换。
    • 4. 发明申请
    • Storage Device Power Management
    • 存储设备电源管理
    • US20120284544A1
    • 2012-11-08
    • US13102890
    • 2011-05-06
    • Changjiu XianBruce L. Worthington
    • Changjiu XianBruce L. Worthington
    • G06F1/32G06F12/00
    • G06F1/3268G06F1/3275G06F1/3293G06F3/061G06F3/0656G06F3/0676G06F12/0804G06F12/0866G06F12/0868G06F2003/0692G06F2212/1028Y02D10/13Y02D10/14
    • Techniques for storage device power management are described that enable coordinated buffer flushing and power management for storage devices. In various embodiments, a power manager can coordinate the flushing of pending or “dirty” data from multiple buffers of a computing device in order to reduce or eliminate interleaved (e.g., uncoordinated) data operations from the multiple buffers that can cause shortened disk idle periods. By so doing, the power manager can selectively manage power states for one or more power-managed storage devices to produce longer idle periods. For example, information regarding the status of multiple buffers can be used in conjunction with analysis of historical I/O patterns to determine appropriate times to spin down a disk or allow the disk to keep spinning. Additionally, user-presence information can be utilized to tune the aggressiveness of buffer coordination and state transitions for power-managed storage devices to improve performance.
    • 描述了用于存储设备电源管理的技术,其用于存储设备的协调缓冲器冲洗和电源管理。 在各种实施例中,功率管理器可以协调来自计算设备的多个缓冲器的等待或脏数据的刷新,以便减少或消除可能导致缩短的盘空闲周期的多个缓冲器的交错(例如,未协调的)数据操作。 通过这样做,功率管理器可以选择性地管理一个或多个功率管理存储设备的功率状态以产生更长的空闲周期。 例如,有关多个缓冲区的状态的信息可以与历史I / O模式的分析一起使用,以确定适当的时间旋转磁盘或允许磁盘保持旋转。 此外,可以利用用户存在信息来调整功率管理存储设备的缓冲器协调和状态转换的积极性,以提高性能。