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    • 62. 发明公开
    • ADAPTIVE IDLE TIMEOUT FOR STORAGE DEVICES
    • 存储设备的自适应空闲超时
    • EP3207448A1
    • 2017-08-23
    • EP15787780.4
    • 2015-10-12
    • Microsoft Technology Licensing, LLC
    • GRIFFITH, Tristan CharlesBOVEE, James C.SHERWIN, Bruce J. Jr.KLIMA, Tobias MariusLIU, Philipp Ruilin
    • G06F3/06
    • G06F1/3296G06F1/324G06F3/0616G06F3/0625G06F3/0634G06F3/0676G06F3/068Y02D10/154
    • In embodiments of adaptive idle timeout for storage devices, a computing device includes a storage device that stores data for read and write access on a rotating media. An operating system of the computing device maintains a device cycle number as an accounting of each time the storage device is powered on-off. The computing device implements a storage device driver that is implemented to obtain the device cycle number of the storage device from the operating system, and determine a projected cycle number over a duration of operational time of the storage device based on the device cycle number. The storage device driver can then determine whether the projected cycle number exceeds a maximum of power on-off cycles within a warranty period of the storage device, and control a frequency of the storage device being powered-off if the projected cycle number exceeds the maximum of power on-off cycles.
    • 在用于存储设备的自适应空闲超时的实施例中,计算设备包括存储设备,该存储设备存储用于在旋转介质上进行读取和写入访问的数据。 计算设备的操作系统将设备周期编号维持为每次存储设备通电开机时的计费。 计算设备实现存储设备驱动器,该存储设备驱动器被实现为从操作系统获得存储设备的设备周期数,并且基于设备周期数来确定存储设备的操作时间期间的预计周期数。 然后,存储设备驱动器可以确定预计的周期数是否超过存储设备的保修期内的功率开关周期的最大值,并且如果预测的周期数超过最大值,则控制存储设备的断电频率 的电源开关周期。
    • 67. 发明公开
    • METHOD AND APPARATUS FOR CONTROLLING A STORAGE DEVICE
    • VERFAHREN UND VORRICHTUNG ZUR STEUERUNG EINER SPEICHERVORRICHTUNG
    • EP2936276A4
    • 2016-06-22
    • EP13865846
    • 2013-06-13
    • INTEL CORP
    • HUFFMAN AMBERGRIMSRUD KNUTBARNES THOMAS
    • G06F1/32G06F3/06G06F13/00
    • G06F3/0634G06F1/3206G06F1/3268G06F3/0605G06F3/061G06F3/0625G06F3/0679Y02B60/1246Y02D10/154
    • A mass storage device such as a disk drive or SSD (solid state drive) employs optimization logic for reduced power consumption in a host personal electronic device that identifies and prioritizes performance and power trade-offs by considering user expectations, user presence and application responsiveness. The storage device receives commands and information from the host device indicative of user expectations about application invocation, data freshness, and usage patterns, and determines a operational state indicative of behavior settings for reducing power consumption while maintaining the performance constraints required by the user expectations. The granularity of performance considerations communicated from the host device to the mass storage device is expanded to permit the storage device to determine, based on performance constraints from user expectations, appropriate and specific power reduction measures for maintaining the user experience.
    • 诸如磁盘驱动器或SSD(固态驱动器)的大容量存储设备使用优化逻辑来降低主机个人电子设备中的功耗,通过考虑用户期望,用户存在和应用响应性来识别和优先考虑性能和功率权衡。 存储设备从主机设备接收指示用户对应用调用,数据新鲜度和使用模式的预期的命令和信息,并且确定指示用于降低功耗的行为设置的操作状态,同时保持用户期望所需的性能约束。 扩展从主机设备传送到大容量存储设备的性能考虑的粒度,以允许存储设备基于用户期望的性能约束来确定用于维护用户体验的适当和具体的功率降低措施。