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    • 4. 发明授权
    • Vibration disturbance estimation and control
    • 振动扰动估计与控制
    • US08711511B2
    • 2014-04-29
    • US13526529
    • 2012-06-19
    • Angeliki PantaziNhan Xuan BuiJens Jelitto
    • Angeliki PantaziNhan Xuan BuiJens Jelitto
    • G11B5/55G11B19/04
    • G11B5/584
    • A tape drive configured to accurately position a head actuator in the presence of physical disturbances is disclosed. The tape drive includes a track-follow controller to position a head actuator over data tracks on magnetic tape. The tape drive further includes a disturbance observer configured to estimate a vibration disturbance and output a compensation signal to assist the track-follow controller to accurately position the head actuator over the data tracks in the presence of vibration. When estimating the vibration disturbance, the disturbance observer takes into account vibration frequency characteristics, such as frequency characteristics derived from a vibration specification associated with the tape drive, or frequency characteristics derived from known vibration disturbances experienced by the tape drive. A corresponding method is also disclosed.
    • 公开了一种配置成在存在物理扰动的情况下精确地定位头致动器的磁带驱动器。 磁带驱动器包括轨道跟随控制器,用于将磁头执行器定位在磁带上的数据轨道上。 磁带驱动器还包括被配置为估计振动干扰并输出补偿信号的扰动观察器,以帮助跟踪跟踪控制器在存在振动的情况下将头致动器精确地定位在数据轨道上。 当估计振动扰动时,扰动观测器考虑振动频率特性,例如从与磁带驱动相关联的振动规格得出的频率特性,或由磁带机所经历的已知振动干扰导出的频率特性。 还公开了相应的方法。
    • 6. 发明授权
    • Tape drive velocity control
    • 磁带机速度控制
    • US08405926B2
    • 2013-03-26
    • US12842938
    • 2010-07-23
    • Nhan Xuan BuiReed Alan HancockRandy Clark InchShuhei NadeharaEiji OguraKazuhiro Tsuruta
    • Nhan Xuan BuiReed Alan HancockRandy Clark InchShuhei NadeharaEiji OguraKazuhiro Tsuruta
    • G11B15/52G11B15/46
    • G11B15/32G11B15/46G11B15/52
    • In accordance with the present invention, a method of operating a magnetic tape drive, a magnetic tape drive and a servo control system are provided for obtaining and maintaining velocity control in a magnetic tape drive. In one embodiment, a method is provided for operating a magnetic tape drive. The tape drive includes a plurality of DC motors, and each DC motor has a plurality of Hall sensors. The DC motors are under the control of a servo system which is configured to read location information from the magnetic tape, and compute a primary tape velocity from the location information, and sense a secondary and tertiary velocity signal and compute a tape velocity based on one of the sensed secondary velocity signal and tertiary velocity. The method includes detecting if the primary velocity location information is available. In response to detecting that the primary velocity location information is available the primary velocity is employed to control the servo system. In response to detecting the primary velocity location information is unavailable then one of a secondary or a tertiary velocity signal is employed. The secondary velocity signal is employed when an absolute value of a term related to tape velocity is less than a predetermined value. The tertiary velocity signal is employed when the absolute value of the term related to tape velocity is greater than the predetermined value.
    • 根据本发明,提供了一种操作磁带驱动器,磁带驱动器和伺服控制系统的方法,用于获得和维持磁带驱动器中的速度控制。 在一个实施例中,提供了一种用于操作磁带驱动器的方法。 磁带驱动器包括多个DC电动机,并且每个DC电动机具有多个霍尔传感器。 直流电动机处于伺服系统的控制之下,伺服系统被配置为从磁带读取位置信息,并从位置信息计算主带速度,并感测二次和三次速度信号,并基于一个速度信号计算磁带速度 的感测二次速度信号和三次速度。 该方法包括检测主速度位置信息是否可用。 响应于检测到主速度位置信息可用,主速度被用于控制伺服系统。 响应于检测到主速度位置信息不可用,则采用次速或三速信号中的一个。 当与磁带速度相关的项的绝对值小于预定值时,采用二次速度信号。 当与磁带速度相关的项的绝对值大于预定值时,采用三次速度信号。
    • 9. 发明授权
    • Application of continuous position error offset signal to acquire servo track
    • 应用连续位置误差偏移信号采集伺服轨迹
    • US08134797B2
    • 2012-03-13
    • US12716956
    • 2010-03-03
    • Nhan Xuan BuiRandy Clark InchEiji Ogura
    • Nhan Xuan BuiRandy Clark InchEiji Ogura
    • G11B5/55G11B5/584
    • G11B5/584
    • The method employs a servo system for positioning a head laterally to follow lateral motion of a longitudinal tape having longitudinal defined servo track(s), the servo system comprising a servo element configured to sense lateral position of the head with respect to an acquired servo track, a fine actuator configured to translate the head laterally with respect to the longitudinal tape, and a position error signal loop to operate the fine actuator to translate the head laterally to reduce position error. If the servo element is positioned away from the defined servo track(s), a continuous position error offset signal is applied to the fine actuator in a direction towards the defined servo track(s), whereby the fine actuator translates the head in accordance with the continuous position error offset signal; and, in response to the servo system acquiring the defined servo track(s), the continuous position error offset signal is discontinued.
    • 该方法采用伺服系统来横向定位头部以跟随具有纵向限定的伺服轨道的纵向带的侧向运动,该伺服系统包括伺服元件,该伺服元件被配置为感测头部相对于所获取的伺服轨道的横向位置 ,精细致动器,被配置为相对于纵向带横向地平移头部;以及位置误差信号回路,用于操作精细致动器以横向平移头部以减少位置误差。 如果伺服元件远离定义的伺服轨道定位,则连续的位置误差偏移信号在朝向所定义的伺服轨道的方向上被施加到精细致动器,由此精细致动器根据 连续位置误差偏移信号; 并且响应于伺服系统获取所定义的伺服轨迹,连续位置误差偏移信号被停止。
    • 10. 发明申请
    • 'Tape Drive Velocity Control'
    • “磁带驱动器速度控制”
    • US20120019953A1
    • 2012-01-26
    • US12842938
    • 2010-07-23
    • Nhan Xuan BuiReed Alan HancockRandy Clark InchShuhei NadeharaEiji OguraKazuhiro Tsuruta
    • Nhan Xuan BuiReed Alan HancockRandy Clark InchShuhei NadeharaEiji OguraKazuhiro Tsuruta
    • G11B19/02
    • G11B15/32G11B15/46G11B15/52
    • In accordance with the present invention, a method of operating a magnetic tape drive, a magnetic tape drive and a servo control system are provided for obtaining and maintaining velocity control in a magnetic tape drive. In one embodiment, a method is provided for operating a magnetic tape drive. The tape drive includes a plurality of DC motors, and each DC motor has a plurality of Hall sensors. The DC motors are under the control of a servo system which is configured to read location information from the magnetic tape, and compute a primary tape velocity from the location information, and sense a secondary and tertiary velocity signal and compute a tape velocity based on one of the sensed secondary velocity signal and tertiary velocity. The method includes detecting if the primary velocity location information is available. In response to detecting that the primary velocity location information is available the primary velocity is employed to control the servo system. In response to detecting the primary velocity location information is unavailable then one of a secondary or a tertiary velocity signal is employed. The secondary velocity signal is employed when an absolute value of a term related to tape velocity is less than a predetermined value. The tertiary velocity signal is employed when the absolute value of the term related to tape velocity is greater than the predetermined value.
    • 根据本发明,提供了一种操作磁带驱动器,磁带驱动器和伺服控制系统的方法,用于获得和维持磁带驱动器中的速度控制。 在一个实施例中,提供了一种用于操作磁带驱动器的方法。 磁带驱动器包括多个DC电动机,并且每个DC电动机具有多个霍尔传感器。 直流电动机处于伺服系统的控制之下,伺服系统被配置为从磁带读取位置信息,并从位置信息计算主带速度,并感测二次和三次速度信号,并基于一个速度信号计算磁带速度 的感测二次速度信号和三次速度。 该方法包括检测主速度位置信息是否可用。 响应于检测到主速度位置信息可用,主速度被用于控制伺服系统。 响应于检测到主速度位置信息不可用,则采用次速或三速信号中的一个。 当与磁带速度相关的项的绝对值小于预定值时,采用二次速度信号。 当与磁带速度相关的项的绝对值大于预定值时,采用三次速度信号。