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    • 1. 发明授权
    • Automatically matching data sets with storage components
    • 自动将数据集与存储组件进行匹配
    • US08949293B2
    • 2015-02-03
    • US12972137
    • 2010-12-17
    • Magdi A. MorsiWai Ho AuYing SunSanjeev KatariyaYang XuNina Sarawgi
    • Magdi A. MorsiWai Ho AuYing SunSanjeev KatariyaYang XuNina Sarawgi
    • G06F17/30G06F11/34
    • G06F17/30289G06F11/3442G06F11/3485
    • An administrator of an enterprise storage set may be tasked with storing a large number and variety of data sets on a large number and variety of storage components. However, the manual selection of a physical schema by an administrator may be time-consuming, may generate inefficient physical schemata, and may not be easily reevaluated as the data sets and storage set change. Presented herein are techniques for automatically determining a physical schema by comparing the storage factors of each data set (e.g., data size, relationships with other data sets, and usages of the data set by users) with the storage capabilities of the storage components, selecting a suitable storage component, and implementing the storage of the data set on the storage component. An embodiment of these techniques may thereby achieve an automated identification of a physical schema with improved efficiency and flexibility of the physical schema while conserving administrative resources.
    • 企业存储集的管理员可以负责在大量和多种存储组件上存储大量和多种数据集。 然而,由管理员手动选择物理模式可能是耗时的,可能产生低效的物理模式,并且可能不会随数据集和存储集改变而容易地重新评估。 这里提出的技术是通过将每个数据集的存储因子(例如,数据大小,与其他数据集的关系以及用户的数据集的使用)与存储组件的存储能力进行比较来自动确定物理模式,选择 合适的存储组件,以及在存储组件上实现数据集的存储。 因此,这些技术的实施例可以实现物理模式的自动识别,同时节省管理资源,同时提高物理模式的效率和灵活性。
    • 2. 发明申请
    • AUTOMATICALLY MATCHING DATA SETS WITH STORAGE COMPONENTS
    • 与存储组件自动匹配数据集
    • US20120158799A1
    • 2012-06-21
    • US12972137
    • 2010-12-17
    • Magdi A. MorsiWai Ho AuYing SunSanjeev KatariyaYang XuNina Sarawgi
    • Magdi A. MorsiWai Ho AuYing SunSanjeev KatariyaYang XuNina Sarawgi
    • G06F7/00
    • G06F17/30289G06F11/3442G06F11/3485
    • An administrator of an enterprise storage set may be tasked with storing a large number and variety of data sets on a large number and variety of storage components. However, the manual selection of a physical schema by an administrator may be time-consuming, may generate inefficient physical schemata, and may not be easily reevaluated as the data sets and storage set change. Presented herein are techniques for automatically determining a physical schema by comparing the storage factors of each data set (e.g., data size, relationships with other data sets, and usages of the data set by users) with the storage capabilities of the storage components, selecting a suitable storage component, and implementing the storage of the data set on the storage component. An embodiment of these techniques may thereby achieve an automated identification of a physical schema with improved efficiency and flexibility of the physical schema while conserving administrative resources.
    • 企业存储集的管理员可以负责在大量和多种存储组件上存储大量和多种数据集。 然而,由管理员手动选择物理模式可能是耗时的,可能产生低效的物理模式,并且可能不会随数据集和存储集改变而容易地重新评估。 这里提出的技术是通过将每个数据集的存储因子(例如,数据大小,与其他数据集的关系以及用户的数据集的用法)与存储组件的存储能力进行比较来自动确定物理模式,选择 合适的存储组件,以及在存储组件上实现数据集的存储。 因此,这些技术的实施例可以实现物理模式的自动识别,同时节省管理资源,同时提高物理模式的效率和灵活性。
    • 3. 发明授权
    • Data retention component and framework
    • 数据保留组件和框架
    • US08706697B2
    • 2014-04-22
    • US12972320
    • 2010-12-17
    • Magdi MorsiYing SunWai Ho AuSanjeev KatariyaScott Sovine
    • Magdi MorsiYing SunWai Ho AuSanjeev KatariyaScott Sovine
    • G06F17/30
    • G06F17/30085
    • Systems and methods for dynamically managed data retention are described. The system comprises a tiered framework having a plurality of namespaces. The namespaces are configured by a user to have selected data retention attributes. Data including a manifest may be received by the system, processed, and directed to a namespace based upon the manifest. Data storage partitions may be created automatically in association with a namespace, and the data partitions may be assigned partition attributes. Data in a storage partition may be migrated automatically to another namespace based on the partition attributes. Code necessary for creating storage partitions and migrating data is generated by the data management system.
    • 描述了用于动态管理数据保留的系统和方法。 该系统包括具有多个命名空间的分层框架。 命名空间由用户配置为具有选定的数据保留属性。 包括清单的数据可以由系统接收,根据清单进行处理并定向到命名空间。 可以与命名空间相关联地创建数据存储分区,并且数据分区可以被分配分区属性。 存储分区中的数据可能会根据分区属性自动迁移到另一个命名空间。 创建存储分区和迁移数据所需的代码由数据管理系统生成。