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    • 1. 发明授权
    • Ultrasonic flaw detector device
    • 超声波探伤仪
    • US4472346A
    • 1984-09-18
    • US287795
    • 1981-07-28
    • Hiroyuki TakedaKazuo YamadaIzumi KobayashiYousuke OjiriShigeru Kajiyama
    • Hiroyuki TakedaKazuo YamadaIzumi KobayashiYousuke OjiriShigeru Kajiyama
    • G21C17/032G21C17/00
    • G21C17/032
    • An ultrasonic flaw detector device including axial and circumferential fixed tracks located in a space defined between a pressure vessel of a nuclear reactor and a heat insulating wall surrounding the vessel and arranged axially and circumferentially respectively of the pressure vessel of the nuclear reactor. A rotary track is located at a junction of the axial fixed track and the circumferential fixed track and moved in rotary movement by a chain and has its angle of rotation restricted by a pair of stoppers. A carrier member supporting an ultrasonic probe is moved on the tracks to effect ultrasonic flaw detection to detect any flow that might be present in the pressure vessel. To transfer the carrier member from the axial fixed track to the circumferential fixed track, the carrier member is first transferred from the axial fixed track to the rotatable track, and after the rotary track is rotated, the carrier member is transferred from the rotatable track to the circumferential fixed track.
    • 一种超声波探伤装置,其包括位于核反应堆的压力容器之间的空间中的轴向和周向的固定轨道,以及围绕容器的绝热壁,并分别轴向和周向地布置在核反应堆的压力容器中。 旋转轨道位于轴向固定轨道和周向固定轨道的接合处,并通过链条旋转运动,并且其旋转角度受到一对挡块的限制。 支撑超声波探头的载体部件在轨道上移动以实现超声波探伤以检测可能存在于压力容器中的任何流动。 为了将载体构件从轴向固定轨道传递到周向固定轨道,承载构件首先从轴向固定轨道传递到可旋转轨道,并且在旋转轨道旋转之后,承载构件从可旋转轨道传递到 圆周固定轨道。
    • 4. 发明授权
    • Image processing apparatus and image processing method
    • 图像处理装置和图像处理方法
    • US08824804B2
    • 2014-09-02
    • US13287497
    • 2011-11-02
    • Mitsuyuki TamataniKazuo Yamada
    • Mitsuyuki TamataniKazuo Yamada
    • G06K9/66G06T1/20
    • G06T1/20
    • An image processing apparatus includes: a determining unit determining, in image data including packs each including pixels and serving as a unit, a monotonic pack including pixels equal to a precedently image-processed preceding pixel and a normal pack other than the monotonic pack; a pixel row forming unit forming a pixel row including aligned pixels of the normal pack, while deleting the pixels of the monotonic pack; a pixel row processing unit processing the formed pixel row by inputting the pixel row to an image processing unit; and a supplementing unit supplementing an image processing result of the pixel row output from the image processing unit with, as an image processing result of the deleted pixels of the monotonic pack, a result of image processing by the image processing unit on the preceding pixel of the normal pack, to thereby obtain an image processing result of the image data.
    • 一种图像处理装置,包括:确定单元,确定包括每个包括像素并作为一个单元的包的包的图像数据,包括等于先前图像处理的先前像素的像素和除单调包之外的正常包的像素的单调包; 像素行形成单元,其形成包括所述正常包的对齐像素的像素行,同时删除所述单调包的像素; 像素行处理单元,通过将像素行输入到图像处理单元来处理所形成的像素行; 以及补充单元,其补充从图像处理单元输出的像素行的图像处理结果,作为单调包的已删除像素的图像处理结果,由图像处理单元在先前像素的图像处理单元的图像处理结果 正常包装,从而获得图像数据的图像处理结果。
    • 6. 发明授权
    • Print image processing apparatus and computer readable medium
    • 打印图像处理装置和计算机可读介质
    • US08587793B2
    • 2013-11-19
    • US12912278
    • 2010-10-26
    • Takao NaitoKazuo Yamada
    • Takao NaitoKazuo Yamada
    • G06F3/12G06K9/54
    • G06F3/1215G06F3/124G06F3/1247G06F3/1279G06F3/1282G06K15/1823G06K15/1849G06K15/1851G06K15/1857
    • A print image processing apparatus, includes N image processing circuits; a selection unit that estimates, every N pages, a necessary time corresponding to each of (i) a page-based parallel method for allocating image processing of the N pages to the image processing circuits in units of pages to perform the image processing of the N pages in parallel, and (ii) a paginal-object-based parallel method for allocating image processing of each single page to the image processing circuits in units of objects to perform the image processing of the objects of each single page in parallel, and selects one of the page-based parallel method and the paginal-object-based parallel method such that the estimated necessary time corresponding to the selected one of the parallel methods is shorter than the estimated necessary time; and an allocation unit that allocates image processing of the N pages to the N image processing circuit, respectively.
    • 一种打印图像处理装置,包括N个图像处理电路; 每个N页面估计每个N页面所需的时间的必要时间,所述必要时间对应于(i)用于以页为单位将N页的图像处理分配给图像处理电路的基于页的并行方法,以执行图像处理 N页并行,以及(ii)基于对象的并行方法,用于以对象为单位将每个单页的图像处理分配给图像处理电路,以并行地执行每个单页的对象的图像处理;以及 选择基于页面的并行方法和基于对象的并行方法之一,使得与所选择的并行方法中的一个并行方法相对应的估计必要时间短于估计的必要时间; 以及分配单元,其将N个页面的图像处理分别分配给N个图像处理电路。
    • 7. 发明授权
    • Image data processing apparatus, image data processing method, and computer readable medium
    • 图像数据处理装置,图像数据处理方法和计算机可读介质
    • US08554003B2
    • 2013-10-08
    • US13295405
    • 2011-11-14
    • Takao NaitoKazuo Yamada
    • Takao NaitoKazuo Yamada
    • G06K9/36G06K9/46
    • G06T1/20
    • An image data processing apparatus includes the following elements. A lossless compression device performs lossless compression. A configuration controller performs control so that a first configuration including a first line memory set and a decompression circuit set and a second configuration including a second line memory set are selectively set in a reconfigurable circuit. A maximum size determining device determines the maximum size of lines of the compressed image data. An output controller performs control so that, when the maximum size is equal to or smaller than a predetermined threshold, the first configuration is set and the compressed image data is output to an image processing circuit via the first line memory set, and so that, when the maximum size is greater than the predetermined threshold, the second configuration is set and the non-compressed image data is output to the image processing circuit via the second line memory set.
    • 图像数据处理装置包括以下要素。 无损压缩装置执行无损压缩。 配置控制器执行控制,使得在可重新配置的电路中选择性地设置包括第一行存储器组和解压缩电路组的第一配置以及包括第二行存储器组的第二配置。 最大尺寸确定装置确定压缩图像数据的行的最大尺寸。 输出控制器执行控制,使得当最大尺寸等于或小于预定阈值时,设置第一配置,并且经由第一行存储器将经压缩的图像数据输出到图像处理电路, 当最大尺寸大于预定阈值时,设置第二配置,并且经由第二行存储器组将非压缩图像数据输出到图像处理电路。
    • 10. 发明授权
    • Generation facility management system
    • 一代设备管理系统
    • US07979166B2
    • 2011-07-12
    • US11587938
    • 2005-04-22
    • Kazuo YamadaNobuhiro FukeTakashi FukushimaKatsushi Kishimoto
    • Kazuo YamadaNobuhiro FukeTakashi FukushimaKatsushi Kishimoto
    • G06F19/00
    • H02J3/383G06Q50/06H02J3/06H02J3/386Y02E10/563Y02E10/763Y04S10/54Y04S10/60
    • The invention relates to a generation facility management system using natural energy, and an object of the invention is to promote introduction of a generation facility by giving a consideration for generated and consumed power.The generation facility management system is characterized in including a generation facility using natural energy and a management server for managing power information on the generation facility, wherein the generation facility includes: an energy obtaining section for obtaining natural energy; a power generating section for generating power from the obtained natural energy; an information control section for creating generated power information on the power generated by the power generating section; and a communication section for transmitting the power information to the management server, and the management server includes an information management section for determining a consideration for the power information transmitted from the generation facility by using predetermined consideration information.
    • 本发明涉及使用自然能源的发电设备管理系统,本发明的目的是通过考虑生成和消耗功率来促进发电设备的引入。 发电设备管理系统的特征在于包括使用自然能源的发电设备和用于管理发电设备上的电力信息的管理服务器,其中发电设备包括:能量获取部分,用于获得自然能; 发电部,用于从所获得的自然能发电; 信息控制部分,用于创建关于由发电部分产生的电力的生成电力信息; 以及用于将功率信息发送到管理服务器的通信部分,并且管理服务器包括信息管理部分,用于通过使用预定的考虑信息来确定从发电设备发送的功率信息的考虑。