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    • 3. 发明授权
    • Device management apparatus, device management method and device management program
    • 设备管理装置,设备管理方法和设备管理程序
    • US08321602B2
    • 2012-11-27
    • US12551124
    • 2009-08-31
    • Shinya Nakagawa
    • Shinya Nakagawa
    • G06F3/00G06F13/12
    • G05B19/4185Y02P90/18Y02P90/205
    • A device management apparatus may include, but is not limited to, a device controller that controls a device, a communication controller, a management unit, and a monitoring unit. The communication controller controls a communication between the device and the device controller. The management unit manages the device controller and the communication controller. The monitoring unit is disposed between the device controller and the communication controller. The monitoring unit formats data that is transmitted between the device controller and the communication controller so as to create formatted data. The monitoring unit supplies the formatted data to the management unit.
    • 设备管理设备可以包括但不限于控制设备,通信控制器,管理单元和监视单元的设备控制器。 通信控制器控制设备和设备控制器之间的通信。 管理单元管理设备控制器和通信控制器。 监视单元设置在设备控制器和通信控制器之间。 监视单元格式化设备控制器和通信控制器之间传输的数据,以便创建格式化的数据。 监视单元将格式化的数据提供给管理单元。
    • 6. 发明授权
    • Multilayer distributed processing system
    • 多层分布式处理系统
    • US09015308B2
    • 2015-04-21
    • US12162979
    • 2007-01-17
    • Qingjie DuShinya Nakagawa
    • Qingjie DuShinya Nakagawa
    • G06F15/173G06F9/46G06F9/50
    • G06F9/466G06F9/5055
    • The independencies of a plurality of layers executing dividingly a transaction can be easily enhanced. Anode (30) assigns to a transaction to anode (30) of a lower layer through a distributed transaction management section. The node (30) shares a predetermined transaction with the node (30) of the lower layer along with other nodes (30). The node (30) shared by the nodes (30) is a read-only node or a node to which data can be written by the characteristic of a function. Thus the node (30) searches for an unused node (30) in lower layers through the distributed transaction management section (34) when the node starts a new transaction. First, second, and third node hosts (3,4,5) check if each node (30) is used for which transaction or if each node (30) is used or not and store the results.
    • 可以容易地增强分开执行事务的多个层的独立性。 阳极(30)通过分布式事务管理部分向下层的阳极(30)分配事务。 节点(30)与其他节点(30)一起与下层的节点(30)共享预定的事务。 由节点(30)共享的节点(30)是只读节点或能通过功能的特性写入数据的节点。 因此,当节点开始新的事务时,节点(30)通过分布式事务管理部分(34)搜索较低层中的未使用的节点(30)。 第一,第二和第三节点主机(3,4,5)检查每个节点(30)是否用于哪个事务,或者是否使用每个节点(30),并存储结果。
    • 9. 发明授权
    • Character recognition system
    • 字符识别系统
    • US07254269B2
    • 2007-08-07
    • US10128773
    • 2002-04-19
    • Shinya Nakagawa
    • Shinya Nakagawa
    • G06K9/48
    • G06K9/6807
    • In the prior art, in character recognition of a language having many characters, such as Japanese, a feature vector is extracted from an input pattern, distances between the feature vector and reference vectors are calculated, and a character corresponding to a reference vector having the smallest distance value is selected as a recognized character. However, in the character recognition of a language having many characters, since the number of the reference vectors to be compared is large, there is a limit in improvement of processing speed of the character recognition. In the present invention, reference vectors corresponding to target characters are classified into plurality of classes based on occurrence frequencies of characters. When distances between the feature vector and the reference vectors are calculated, a comparison is sequentially made from the reference vectors of a class having a high character occurrence frequency, so that the processing speed of the character recognition is improved.
    • 在现有技术中,在诸如日语的具有许多字符的语言的字符识别中,从输入图案中提取特征向量,计算特征向量和参考向量之间的距离,并且对应于具有 选择最小距离值作为识别的字符。 然而,在具有许多字符的语言的字符识别中,由于要比较的参考向量的数量较大,因此在提高字符识别的处理速度方面存在限制。 在本发明中,对应于目标字符的参考矢量基于字符的出现频率被分类为多个等级。 当计算特征向量与参考矢量之间的距离时,从具有高字符出现频率的类的参考向量依次进行比较,从而提高了字符识别的处理速度。