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    • 14. 发明授权
    • Frequency analyzing method and apparatus for time series data
    • 时间序列数据的频率分析方法和装置
    • US5754438A
    • 1998-05-19
    • US720433
    • 1996-09-30
    • Ken NaonoNobutoshi Sagawa
    • Ken NaonoNobutoshi Sagawa
    • G10L11/00G06F17/14G06F17/18
    • G06F17/18
    • By using the wavelet method and the inverse Mallat transform of the wavelet theory, frequency analysis of large scale time series data is carried out at high speed while effectively utilizing the hardware of a parallel computer of distributed memory type. To be concrete, on the parallel computer of distributed memory type, data to be analyzed, a scaling function, and a Daubechies's progression are inputted to individual memories. Highest order frequency component parallel numerical integral operation is conducted to derive a frequency component of the highest order to be analyzed. Series low frequency component analyzing using the inverse Mallat transform is conducted to effect frequency analysis other than the highest frequency by using the inverse Mallat transform of the wavelet theory. Frequency data combining is conducted to put together frequencies derived by respective processors in an external memory.
    • 通过使用小波方法和小波理论的逆Mallat变换,高效地进行大规模时间序列数据的频率分析,同时有效利用分布式存储器类型并行计算机的硬件。 具体来说,在分布式存储器类型的并行计算机上,要分析的数据,缩放函数和Daubechies的进程被输入到各个存储器。 进行最高阶频率分量并行数值积分运算,得出要分析的最高阶的频率分量。 使用逆Mallal变换进行系列低频分量分析,通过使用小波理论的逆Mallat变换进行除最高频率之外的频率分析。 进行频率数据组合,将由相应处理器导出的频率组合在外部存储器中。
    • 16. 发明授权
    • System and method for virtualizing a distributed network storage as a single-view file system
    • 将分布式网络存储器虚拟化为单视图文件系统的系统和方法
    • US07587426B2
    • 2009-09-08
    • US10219770
    • 2002-08-16
    • Shinji FujiwaraNobutoshi SagawaTetsuya UemuraHiroaki Odawara
    • Shinji FujiwaraNobutoshi SagawaTetsuya UemuraHiroaki Odawara
    • G06F17/30
    • H04L67/1097H04L67/1002H04L67/1023
    • The invention relates to a method of virtualizing a plurality of network storages into a single-view file system for a client and obtains information about an object's storage location without inquiring of a resource manager. The method determines a network storage that should store an object based on a hash value generated from a logical identifier for the object to be accessed. While accessing the object, the method computes the hash value for the object's logical identifier to determine a network storage that should process an access request. Consequently, the method eliminates the need to inquire the object's storage location when the access request is issued. Further, the method eliminates the need to maintain the object's storage location when the number of servers is increased or decreased, thus providing easy management.
    • 本发明涉及将多个网络存储器虚拟化为用于客户机的单视图文件系统的方法,并且在不查询资源管理器的情况下获取关于对象的存储位置的信息。 该方法基于从要访问的对象的逻辑标识符生成的散列值来确定应存储对象的网络存储。 在访问对象时,该方法计算对象的逻辑标识符的哈希值,以确定应处理访问请求的网络存储。 因此,当发出访问请求时,该方法消除了查询对象的存储位置的需要。 此外,当服务器的数量增加或减少时,该方法消除了维护对象的存储位置的需要,从而提供容易的管理。
    • 18. 发明申请
    • Process control system and process control method
    • 过程控制系统和过程控制方法
    • US20070038675A1
    • 2007-02-15
    • US11515815
    • 2006-09-06
    • Tomoyuki MochizukiNobutoshi SagawaYoji TaniguchiYuichi Kobayashi
    • Tomoyuki MochizukiNobutoshi SagawaYoji TaniguchiYuichi Kobayashi
    • G06F17/00
    • G06Q10/06G06Q10/0875
    • In a process control system according to the present invention, a history record table, a history record relationship table, a process table, and a process relationship table are provided. The history record table stores information on a history record. The history record relationship table stores information on a history record relationship. The process table stores information on a process. The process relationship table stores information on a process relationship. When a history record is received, history records of the previous process and the next process are searched. Then, both of the history record relationship between a history record of the present process and a history record of the previous process and the history record relationship between the history record of the present process and a history record of the next process are created. Then, using the process table, the process relationship table, and history record information that has been already collected, history records that have not been received are estimated and then are displayed according to work order. With such arrangement, it is possible to trace a product item correctly even when some of history records are not registered since time required to register a history is varied depending on the processes or for other reasons, or there are not some of necessary history records.
    • 在根据本发明的过程控制系统中,提供历史记录表,历史记录关系表,处理表和过程关系表。 历史记录表存储关于历史记录的信息。 历史记录关系表存储关于历史记录关系的信息。 进程表存储有关进程的信息。 过程关系表存储关于过程关系的信息。 当接收到历史记录时,搜索上一个进程和下一个进程的历史记录。 然后,创建当前进程的历史记录与先前处理的历史记录与当前进程的历史记录与下一个进程的历史记录之间的历史记录关系之间的历史记录关系。 然后,使用已经收集的过程表,过程关系表和历史记录信息,估计未被接收的历史记录,然后根据工作顺序显示。 通过这样的布置,即使当某些历史记录未被注册时,也可以正确地跟踪产品项目,因为注册历史记录的时间根据过程或其他原因而变化,或者没有一些必要的历史记录。