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    • 5. 发明授权
    • Filestream data storage attribute
    • Filestream数据存储属性
    • US07421443B2
    • 2008-09-02
    • US10353730
    • 2003-01-29
    • Rajeev B. RajanBalan Sethu Raman
    • Rajeev B. RajanBalan Sethu Raman
    • G06F17/30
    • G06F17/30595Y10S707/99943
    • Large, unstructured objects can be manipulated within a relational database management system (RDBMS). A “filestream” data storage attribute is provided that can be used to tag a column in a relational table. The filestream attribute identifies the data for that column will be stored as a file in the file system in the operating system. The RDBMS manages the creation and deletion of the file in the file system. There is a 1:1 reference between the file in the file system and a cell (intersection of row and column). The data in the filestream column can be manipulated the same way as the data in other columns using a programming language, such as SQL or MICROSOFT®'s T-SQL.
    • 大型非结构化对象可以在关系数据库管理系统(RDBMS)内进行操作。 提供了一个“filestream”数据存储属性,可以用于标记关系表中的列。 filestream属性标识该列的数据将作为文件存储在操作系统中的文件系统中。 RDBMS管理文件系统中文件的创建和删除。 文件系统中的文件与单元格(行和列的交集)之间有1:1的引用。 可以使用诸如SQL或MICROSOFT(R)的T-SQL之类的编程语言,以与其他列中的数据相同的方式操作filestream列中的数据。
    • 6. 发明授权
    • Policy setting for client-side caching
    • 客户端缓存的策略设置
    • US07392345B2
    • 2008-06-24
    • US11500275
    • 2006-08-07
    • Shishir PardikarJoseph L. LinnBalan Sethu RamanRobert E. Corrington
    • Shishir PardikarJoseph L. LinnBalan Sethu RamanRobert E. Corrington
    • G06F12/08
    • G06F17/30132G06F17/30194G06F17/30902G06F21/6218G06F2221/2141
    • An improved method and system for client-side caching that transparently caches suitable network files for offline use. A cache mechanism in a network redirector transparently intercepts requests to access server files, and if the requested file is locally cached, satisfies the request from the cache when possible. Otherwise the cache mechanism creates a local cache file and satisfies the request from the server, and also fills in a sparse cached file as reads for data in ranges that are missing in the cached file are requested and received from the server. A background process also fills in local files that are sparse, using the existing handle of already open server files, or opening, reading from and closing other server files. Security is also provided by maintaining security information received from the server for files that are in the cache, and using that security information to determine access to the file when offline.
    • 用于客户端缓存的改进方法和系统,可透明缓存合适的网络文件以供离线使用。 网络重定向器中的缓存机制透明地拦截访问服务器文件的请求,如果请求的文件被本地缓存,则尽可能满足缓存的请求。 否则,缓存机制将创建本地缓存文件并满足来自服务器的请求,并且还将稀疏缓存文件填充为从服务器请求和接收的高速缓存文件中缺少的范围内的数据读取。 后台进程还使用已经打开的服务器文件的现有句柄或打开,读取和关闭其他服务器文件来填充稀疏的本地文件。 还通过维护从服务器接收到的缓存中的文件的安全信息来提供安全性,并使用该安全信息来确定在脱机时对文件的访问。
    • 8. 发明授权
    • Dynamic asset monitoring and management using a continuous event processing platform
    • 动态资产监控与管理采用连续事件处理平台
    • US08977643B2
    • 2015-03-10
    • US12826689
    • 2010-06-30
    • Roman SchindlauerBalan Sethu RamanTorsten W. GrabsBeysim Sezgin
    • Roman SchindlauerBalan Sethu RamanTorsten W. GrabsBeysim Sezgin
    • G06F17/30
    • G06F17/30424G06F17/30516G06F17/30545G06F17/30569
    • The disclosed architecture leverages realtime continuous event processing (CEP) to address using a general input interface framework to import a dynamic set of event types (e.g., assets), and using a declarative, expressive query model to implement monitoring and management tasks on an asset level. This is in contrast to looking separately at single values from static databases and/or realtime streams as is common conventionally. The architecture uses the CEP data model to model assets as realtime event types. Thus, queries can be formulated per asset and not just per single stream. The architecture uses the query capabilities of CEP to formulate asset management and monitoring tasks as standing, declarative queries, and uses the input interface of a CEP platform to correlate data from different data sources with different dynamic properties.
    • 所公开的体系结构利用实时连续事件处理(CEP)来解决使用一般输入接口框架来导入一组动态事件类型(例如资产),并使用声明性表达式查询模型来实现对资产的监控和管理任务 水平。 这与传统上常规地从静态数据库和/或实时流中分离出的单个值是相反的。 该架构使用CEP数据模型将资产建模为实时事件类型。 因此,可以为每个资产制定查询,而不仅仅是单个流。 该架构使用CEP的查询功能,将资产管理和监控任务作为站点,声明性查询进行配置,并使用CEP平台的输入界面将来自不同数据源的数据与不同的动态属性相关联。