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    • 3. 发明授权
    • Storage system with middle-way logical volume
    • 具有中间逻辑卷的存储系统
    • US08364905B2
    • 2013-01-29
    • US12857306
    • 2010-08-16
    • Stephen M. SchultzChiung-Shang WuRajavel GnanapragasamJoseph D. BlackNhan Q. Vo
    • Stephen M. SchultzChiung-Shang WuRajavel GnanapragasamJoseph D. BlackNhan Q. Vo
    • G06F12/02
    • G06F12/0866G06F12/0897G06F2212/222
    • A storage system is disclosed including storage devices configured to store data, and a logical storage volume coupled to the storage devices and configured to store a subset of the data as segments. The storage system also includes a controller including a cache and memory. The memory is configured to include records such that each record corresponds with a segment in the logical storage volume and each record includes information regarding data stored in the corresponding segment. The controller is configured to access the records in response to a cache miss of the cache to determine if requested data from the cache miss is stored and ready for access in the logical storage volume. The controller is also configured to update the subset of data stored in the segments as a function of cache misses.
    • 公开了一种存储系统,包括被配置为存储数据的存储设备,以及耦合到存储设备并被配置为将数据的子集存储为段的逻辑存储卷。 存储系统还包括具有缓存和存储器的控制器。 存储器被配置为包括记录,使得每个记录对应于逻辑存储卷中的段,并且每个记录包括关于存储在相应段中的数据的信息。 控制器被配置为响应于缓存的高速缓存未命中来访问记录,以确定来自高速缓存未命中的请求数据是否被存储并准备好在逻辑存储卷中进行访问。 控制器还被配置为根据高速缓存未命中来更新存储在段中的数据子集。
    • 5. 发明授权
    • Segmented spectrum imaging system and method
    • 分段光谱成像系统及方法
    • US07391388B2
    • 2008-06-24
    • US10282501
    • 2002-10-28
    • Stephen M. Schultz
    • Stephen M. Schultz
    • G02F1/13
    • G01J3/2823G01J2003/2826
    • A system and method for producing spectrally segmented images of object fields. In one embodiment the system includes an optical system that focuses light received from an object field along a focal plane with a field stop positioned within the optical system that has plural apertures for selectively transmitting the light from the object field. A diffractive element is positioned within the optical system to spectrally spread, along the focal plane, the light transmitted through the apertures. The apertures can be parallel slots or geometrically arranges holes. The plural apertures are spaced such that the spectrally spread light transmitted through any given aperture and incident upon the focal plane does not overlap on the focal plane with the light transmitted through any other aperture. The diffractive element may spread light across one or more directions. In one embodiment, a processor is coupled to a plurality of pixels in a focal plane array. A memory for storing image data organized as a hyper-spectral cube.
    • 用于产生对象场的频谱分割图像的系统和方法。 在一个实施例中,该系统包括一个光学系统,该光学系统将聚焦平面上从物体场接收的光聚焦在位于光学系统内的场致动器,该光束系统具有用于选择性地透射来自物场的光的多个孔。 衍射元件位于光学系统内,沿着焦平面光谱地扩散透过孔的光。 孔可以是平行狭槽或几何排列孔。 多个孔径被间隔开,使得透射通过任何给定孔径并且入射在焦平面上的光谱扩展的光在焦平面上不重叠,而透过任何其它孔的光。 衍射元件可以在一个或多个方向上传播光。 在一个实施例中,处理器耦合到焦平面阵列中的多个像素。 用于存储组织为超光谱立方体的图像数据的存储器。
    • 7. 发明授权
    • Automatic hard disk bad sector remapping
    • 自动硬盘坏扇区重映射
    • US5166936A
    • 1992-11-24
    • US556340
    • 1990-07-20
    • Richard A. EwertStephen M. Schultz
    • Richard A. EwertStephen M. Schultz
    • G06F11/20G11B20/18
    • G11B20/1883G11B2220/20
    • A method for automatically remapping a disk after receiving a bad sector indication without requiring system operator intervention, initiation of a diagnostic program or system down time. When the disk controller receives the error and mirroring or parity operation is activated, a remap routine is initiated. The routine finds the bad sector in the request, builds a good track of data and stores this good track of data in a reserved area on all the disk units on the controller. The data in the reserved area is then read, and if successful, the track having the bad sector is remapped to remove the bad sector from use. The saved data is then rewritten to the track, thus restoring the disk unit to full operation. A flag is set during the process so that should power fail the process can be restarted.
    • 在不需要系统操作员干预,启动诊断程序或系统停机时间之后,在接收到不良扇区指示之后自动重新映射磁盘的方法。 当磁盘控制器接收到错误并激活镜像或奇偶校验操作时,将启动重映射程序。 该例程在请求中找到不良扇区,构建良好的数据跟踪,并将这个良好的数据轨迹存储在控制器上所有磁盘单元的保留区域中。 然后,读取保留区域中的数据,如果成功,则重新映射具有坏扇区的轨道,以去除坏扇区的使用。 然后将保存的数据重写到轨道,从而将磁盘单元恢复为完全操作。 在该过程中设置一个标志,以便在电源故障的过程中可以重新启动。
    • 9. 发明授权
    • System for identifying the physical location of one or more peripheral
devices by selecting icons on a display representing the one or more
peripheral devices
    • 用于通过在表示一个或多个外围设备的显示器上选择图标来识别一个或多个外围设备的物理位置的系统
    • US6101559A
    • 2000-08-08
    • US955790
    • 1997-10-22
    • Stephen M. SchultzMark J. Thompson
    • Stephen M. SchultzMark J. Thompson
    • G06F3/06G06F13/14
    • G06F3/0605G06F3/0634G06F3/0685
    • A method and apparatus which indicates the physical location of one or more peripheral devices. A system operator uses an input device to select an icon that is displayed on a display device. The icon represents a single peripheral device or a group of peripheral devices among a plurality of peripheral devices. For example, an icon may represent a disk drive, a group of disk drives disposed within a storage unit, an array of disk drives, an array of disk drives disposed within one or more storage units, etc. After the system operator selects the icon, an indicator light associated with each of the one or more peripheral devices represented by the icon illuminates to identify the physical location of the selected peripheral device or devices. Other peripheral devices are contemplated, such as a bank of modems, floppy drives, CD-ROM drives, etc.
    • 一种指示一个或多个外围设备的物理位置的方法和装置。 系统操作员使用输入设备来选择显示在显示设备上的图标。 该图标表示多个外围设备中的单个外围设备或一组外围设备。 例如,图标可以表示磁盘驱动器,设置在存储单元内的一组磁盘驱动器,磁盘驱动器阵列,布置在一个或多个存储单元内的磁盘驱动器阵列等。在系统操作者选择图标之后 与由该图标表示的一个或多个外围设备中的每一个相关联的指示灯照亮以识别所选择的外围设备或设备的物理位置。 可以考虑其他外围设备,例如一组调制解调器,软盘驱动器,CD-ROM驱动器等。