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    • 14. 发明授权
    • Information processing apparatus, information recording medium, information processing method, and information processing program
    • 信息处理装置,信息记录介质,信息处理方法和信息处理程序
    • US08219818B2
    • 2012-07-10
    • US12436323
    • 2009-05-06
    • Kazuo YamamotoKenjiro Ueda
    • Kazuo YamamotoKenjiro Ueda
    • G06F21/00
    • G11B20/00086G11B20/00123G11B20/00166G11B20/00173
    • An information processing apparatus includes: a reproducing unit that reads, from a disc, a content and a content code file storing a content code that includes at least any one of a program or conversion data applied to a content reproducing process, to execute the content reproducing process; and a signature verification unit that verifies a digital signature set for the content code file. The signature verification unit verifies the signature using different pieces of set signature target data between a signature verification process executed in reproducing the content recorded in a ROM disc and a signature verification process executed in reproducing the content recorded in a non-ROM disc other than the ROM disc. The reproducing unit, when signature verification is successfully executed by the signature verification unit, applies the content code stored in the content code file, for which signature verification is successful, to reproduce the content.
    • 一种信息处理设备,包括:再现单元,从盘读取存储内容代码的内容和内容代码文件,所述内容代码文件包括应用于内容再现处理的程序或转换数据中的至少任一个,以执行内容 再现过程; 以及验证内容代码文件的数字签名集的签名验证单元。 签名验证单元使用再现记录在ROM盘中的内容执行的签名验证处理和再现记录在非ROM盘中的内容之外执行的签名验证处理之间的签名验证处理,使用不同的设置的签名目标数据来验证签名 ROM光盘。 当由签名验证单元成功地执行签名验证时,再现单元应用存储在内容代码文件中的用于其签名验证成功的内容代码来再现内容。
    • 15. 发明授权
    • Circular accelerator
    • 圆形加速器
    • US07982416B2
    • 2011-07-19
    • US12277861
    • 2008-11-25
    • Hirofumi TanakaTakashi HifumiKatsuhisa YoshidaKazuo YamamotoYoichi Kuroda
    • Hirofumi TanakaTakashi HifumiKatsuhisa YoshidaKazuo YamamotoYoichi Kuroda
    • H05H11/00
    • H05H7/04
    • In a circular accelerator, a magnetic pole edge portion of a bending electromagnet into and from which a charged particle beam enters and exits is provided with endpacks. A first protrusion is provided at that part of each end pack which is radially outside the equilibrium orbit of a center energy beam, while a second protrusion is provided at that part of each end pack which is radially inside the equilibrium orbit of the center energy beam. The shapes of the first and second protrusions are set so that the betatron oscillation numbers of beams of different acceleration energies may be held constant or become linear to the energies. In case of emitting the charged particle beam out of the circular accelerator, the change of a tune attributed to the change of the beam orbit can be statically corrected, the tune is linearly changed, and an adjustment of the emission of the beam becomes easy.
    • 在圆形加速器中,带电粒子束进出的弯曲电磁体的磁极边缘部分设置有端口。 在中心能量束的平衡轨道的径向外侧的每个端部组件的该部分处设置有第一突出部,而在每个端部组件的位于中心能量束的平衡轨道的径向内侧的部分设置有第二突出部 。 第一和第二突起的形状被设定为使得不同加速度能量的光束的激光振荡数可以保持恒定,或者与能量保持一致。 在从圆形加速器发射带电粒子束的情况下,可以静态校正归因于光束轨道变化的曲调的变化,曲线线性地变化,并且光束的发射调节变得容易。
    • 17. 发明申请
    • CIRCULAR ACCELERATOR
    • 圆形加速器
    • US20090256501A1
    • 2009-10-15
    • US12277861
    • 2008-11-25
    • Hirofumi TANAKATakashi HifumiKatsuhisa YoshidaKazuo YamamotoYoichi Kuroda
    • Hirofumi TANAKATakashi HifumiKatsuhisa YoshidaKazuo YamamotoYoichi Kuroda
    • H05H7/00
    • H05H7/04
    • In a circular accelerator, a magnetic pole edge portion of a bending electromagnet into and from which a charged particle beam enters and exits is provided with endpacks. A first protrusion is provided at that part of each end pack which is radially outside the equilibrium orbit of a center energy beam, while a second protrusion is provided at that part of each end pack which is radially inside the equilibrium orbit of the center energy beam. The shapes of the first and second protrusions are set so that the betatron oscillation numbers of beams of different acceleration energies may be held constant or become linear to the energies. In case of emitting the charged particle beam out of the circular accelerator, the change of a tune attributed to the change of the beam orbit can be statically corrected, the tune is linearly changed, and an adjustment of the emission of the beam becomes easy.
    • 在圆形加速器中,带电粒子束进出的弯曲电磁体的磁极边缘部分设置有端口。 在中心能量束的平衡轨道的径向外侧的每个端部组件的该部分处设置有第一突出部,而在每个端部组件的位于中心能量束的平衡轨道的径向内侧的部分设置有第二突出部 。 第一和第二突起的形状被设定为使得不同加速度能量的光束的激光振荡数可以保持恒定,或者与能量保持一致。 在从圆形加速器发射带电粒子束的情况下,可以静态校正归因于光束轨道变化的曲调的变化,曲线线性地变化,并且光束的发射调节变得容易。
    • 20. 发明申请
    • Zero excess sludge membrane bioreactor
    • 零余量污泥膜生物反应器
    • US20050194310A1
    • 2005-09-08
    • US11070134
    • 2005-03-01
    • Kazuo YamamotoChuan-Hong Xing
    • Kazuo YamamotoChuan-Hong Xing
    • C02F3/30
    • C02F3/1268C02F3/2893C02F3/302Y02W10/15
    • An inclined plate coupled membrane bioreactor for treating feed water having excessive level of nutrients in particular chemical oxygen demand and total nitrogen and suspended solids has an aerobic bioreactor for nitrification and aerobic biodegradation in which membranes are submerged for permeate extraction, and an anoxic bioreactor for denitrification within which the inclined plates are outfitted to confine as much anoxic sludge as possible. An air oxygenating and an air scouring are continuously provided to the aerobic bioreactor to maintain a desired aerobic environment and to mitigate membrane fouling while an intermittent air blowing is provided to the anoxic bioreactor to blow out gaseous content generated through denitrification and to rectify the uniformed flow along the inclined plates. The aerobic sludge is recycled to the lower compartment of anoxic bioreactor and the supernatant of anoxic bioreactor is collected as weir effluent and delivered to the downstream aerobic bioreactor. Permeate is intermittently extracted from the membranes by a suction pump. There is no excess sludge withdrawn from the inclined plate coupled membrane bioreactor throughout the experiment.
    • 用于处理具有特定化学需氧量的过量营养物质和总氮和悬浮固体的进料水的倾斜板耦合膜生物反应器具有用于硝化和需氧生物降解的需氧生物反应器,其中膜被浸没用于渗透物提取,以及用于脱氮的缺氧生物反应器 其中倾斜板被配备以限制尽可能多的缺氧污泥。 连续向需氧生物反应器提供空气氧化和空气冲洗以维持期望的有氧环境并减轻膜污染,同时向缺氧生物反应器提供间歇空气吹送以吹出通过反硝化产生的气体含量并且将均匀流动 沿斜板。 好氧污泥被循环到缺氧生物反应器的较低室,并将缺氧生物反应器的上清液作为污水流出物收集并输送到下游需氧生物反应器。 通过抽吸泵间断地从膜中提取渗透液。 在整个实验过程中,没有从倾斜板连接的膜生物反应器中排出多余的污泥。