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    • 1. 发明授权
    • Real-time simultaneous measurement system, real-time simultaneous measurement apparatus, real-time simultaneous measurement method, and storage medium in which program is stored
    • 实时同步测量系统,实时同步测量装置,实时同步测量方法以及存储程序的存储介质
    • US08396525B2
    • 2013-03-12
    • US12488031
    • 2009-06-19
    • Akihiro IshikawaTatsuya OkabeMasaaki Sato
    • Akihiro IshikawaTatsuya OkabeMasaaki Sato
    • A61B5/00A61B5/04
    • A61B5/0476A61B5/14553
    • A real-time simultaneous measurement apparatus includes: a hemoglobin information-receiving portion that sequentially receives hemoglobin information, which is information relating to the amount of hemoglobin in a head portion of a test subject, from a NIRS brain-measuring apparatus that receives a synchronization signal output by a synchronization signal output apparatus and acquires the hemoglobin information when the synchronization signal has been received; a brain wave information-receiving portion that sequentially receives the brain wave information of the test subject, from an EEG brain wave-measuring apparatus that receives a synchronization signal output by the synchronization signal output apparatus and acquires the brain wave information when the synchronization signal has been received; a synchronization processing portion that performs processing that synchronizes the hemoglobin information and the brain wave information; and an output portion that outputs the synchronized hemoglobin information and brain wave information.
    • 实时同时测量装置包括:血红蛋白信息接收部分,从接收同步的NIRS脑测量装置依次接收与测试对象头部的血红蛋白量相关的信息的血红蛋白信息 信号由同步信号输出装置输出,并且当接收到同步信号时获取血红蛋白信息; 脑波信息接收部,从接收同步信号输出装置输出的同步信号的EEG脑电波测定装置依次接收受检对象的脑波信息,并且当同步信号具有 被收到 执行使血红蛋白信息和脑波信息同步的处理的同步处理部; 以及输出同步血红蛋白信息和脑电波信息的输出部。
    • 2. 发明申请
    • Method Of Producing Gasket For Fuel Cells
    • 生产燃料电池垫片的方法
    • US20080124458A1
    • 2008-05-29
    • US11664415
    • 2005-09-28
    • Tatsuya Okabe
    • Tatsuya Okabe
    • B05D5/12
    • H01M8/0286H01M8/0284H01M8/1007Y02P70/56
    • An object of the invention is to provide a method of producing gasket for fuel cells, in which it is possible to prevent MPL from inhibiting an impregnation at a time of impregnating a GDL with a liquid rubber and thereby it is possible to form a sufficiently impregnated state. In order to achieve the object, in a method of producing gasket for fuel cells, in which a GDL (1) made of a porous material is impregnated with a liquid rubber after an MPL is coated on a surface of the GDL (1), the method comprises the steps of forming an MPL uncoated portion (4) without coating the MPL to a portion where a sealing property is necessary (2) in the GDL (1), by using a method such as masking or the like, at a time of coating the MPL to the surface of the GDL (1), and next impregnating the MPL uncoated portion (4) with the liquid rubber.
    • 本发明的目的是提供一种生产用于燃料电池的垫圈的方法,其中可以防止MPL在用液体橡胶浸渍GDL时抑制浸渍,从而可以形成足够浸渍的 州。 为了实现上述目的,在制造GDL(1)的表面上的MPL涂布后,在由多孔材料制成的GDL(1)的液体橡胶浸渍的燃料电池用垫圈的制造方法中, 该方法包括以下步骤:通过使用诸如掩模等的方法,在GDL(1)中形成MPL未涂覆部分(4)而不将MPL涂覆到需要密封性能的部分(2)上, 将MPL涂布到GDL(1)的表面的时间,接下来用液体橡胶浸渍MPL未涂覆部分(4)。
    • 3. 发明申请
    • Seal Structure for Fuel Cell and Method for Producing Same
    • 燃料电池的密封结构及其制造方法
    • US20080118811A1
    • 2008-05-22
    • US11795604
    • 2005-09-28
    • Tatsuya Okabe
    • Tatsuya Okabe
    • H01M8/02B29C45/14
    • H01M8/0276H01M8/0247H01M8/0284H01M8/0286H01M8/1004H01M2008/1095Y02P70/56
    • A seal structure for impregnating the circumferential edge of a GDL constituting an MEA with a rubber composing a seal lip line in which lowering in power generation capacity is suppressed by controlling the width of a rubber impregnation region for the circumferential edge of the GDL appropriately, thereby preventing the MEA reaction region from becoming narrow. In order to achieve the purpose, an MEA (2) arranged between a pair of separators (5), a rubber sheet (6) arranged on its planar extension on the outer circumferential side of the MEA (2), and a gasket-like lip line (7) formed on the opposite sides of the rubber sheet (6) integrally therewith to be close contact with the separators (5) are provided. At the circumferential edge of the MEA (2), a rubber impregnated portion (8) for integrating the rubber sheet (6) with the MEA (2) when the GDL (4) constituting the MEA (2) is impregnated with a part of the rubber composing the rubber sheet (6) is provided. On the immediately inner circumferential side of the rubber impregnated portion (8) in the plane of the MEA (2), a GDL constricted portion (9) for regulating the rubber impregnated portion is provided.
    • 通过适当地控制GDL的周缘的橡胶浸渍区域的宽度,通过构成密封唇线的橡胶浸渍构成MEA的GDL的周缘的密封结构,通过适当地控制GDL的周缘的橡胶浸渍区域的宽度,能够抑制发电量的降低, 防止MEA反应区变窄。 为了达到上述目的,在MEA(2)的外周侧上设置有一对分隔件(5),布置在其平面延伸部上的橡胶片(6)和垫圈状的MEA(2) 设置与橡胶片(6)的与其一体形成的两侧的唇线(7)与隔板(5)紧密接触。 在MEA(2)的圆周边缘处,当构成MEA(2)的GDL(4)浸渍有一部分的橡胶浸渍部分(8),用于将橡胶片(6)与MEA(2)整合在一起 提供构成橡胶片(6)的橡胶。 在MEA(2)的平面上的橡胶浸渍部(8)的内周侧,设置用于调节橡胶浸渍部的GDL收缩部(9)。
    • 4. 发明申请
    • System and method for estimation of a distribution algorithm
    • 用于估计分布算法的系统和方法
    • US20050256684A1
    • 2005-11-17
    • US11033767
    • 2005-01-11
    • Yaochu JinBernhard SendhoffTatsuya OkabeMarkus Olhofer
    • Yaochu JinBernhard SendhoffTatsuya OkabeMarkus Olhofer
    • G06N3/00G06F17/10G06F17/18G06N3/12
    • G06N3/126G06F2217/08
    • The underlying invention generally relates to the field of Estimation of Distribution Algorithm, especially to optimization problems, including single-objective optimization and Multi-Objective Optimization. The proposed method for optimization comprises six steps. In a first step it provides an initial population or a data set with a plurality of members respectively represented by parameter sets. Then one or a plurality of fitness functions are applied to evaluate the quality of the members of the population. In a third step offspring of the population is generated by means of a stochastic model using information from all members of the population. One or a plurality of fitness functions are applied to evaluate the quality of the offspring with respect to the underlying problem of the optimization. In a fifth step offspring is selected. Lastly the method goes back to the third step until the quality reaches a threshold value.
    • 基本发明一般涉及分布算法估计领域,尤其涉及优化问题,包括单目标优化和多目标优化。 所提出的优化方法包括六个步骤。 在第一步中,它提供初始种群或具有分别由参数集表示的多个成员的数据集。 然后应用一个或多个健身功能来评估人群的成员的质量。 在第三步中,人口的后代是通过使用来自所有成员的信息的随机模型产生的。 应用一个或多个适应度函数来评估后代关于优化的基本问题的质量。 在第五步中选择了后代。 最后,该方法返回到第三步,直到质量达到阈值。
    • 7. 发明授权
    • System and method for estimation of a distribution algorithm
    • 用于估计分布算法的系统和方法
    • US07428514B2
    • 2008-09-23
    • US11033767
    • 2005-01-11
    • Yaochu JinBernhard SendhoffTatsuya OkabeMarkus Olhofer
    • Yaochu JinBernhard SendhoffTatsuya OkabeMarkus Olhofer
    • G06N5/00
    • G06N3/126G06F2217/08
    • The underlying invention generally relates to the field of Estimation of Distribution Algorithm, especially to optimization problems, including single-objective optimization and Multi-Objective Optimization.The proposed method for optimization comprises six steps. In a first step it provides an initial population or a data set with a plurality of members respectively represented by parameter sets. Then one or a plurality of fitness functions are applied to evaluate the quality of the members of the population. In a third step offspring of the population is generated by means of a stochastic model using information from all members of the population. One or a plurality of fitness functions are applied to evaluate the quality of the offspring with respect to the underlying problem of the optimization. In a fifth step offspring is selected. Lastly the method goes back to the third step until the quality reaches a threshold value.
    • 基本发明一般涉及分布算法估计领域,尤其涉及优化问题,包括单目标优化和多目标优化。 所提出的优化方法包括六个步骤。 在第一步中,它提供初始种群或具有分别由参数集表示的多个成员的数据集。 然后应用一个或多个健身功能来评估人群的成员的质量。 在第三步中,人口的后代是通过使用来自所有成员的信息的随机模型产生的。 应用一个或多个适应度函数来评估后代关于优化的基本问题的质量。 在第五步中选择了后代。 最后,该方法返回到第三步,直到质量达到阈值。
    • 8. 发明申请
    • SEAL STRUCTURE FOR FUEL CELL AND METHOD FOR PRODUCING SAME
    • 燃料电池的密封结构及其制造方法
    • US20120122010A1
    • 2012-05-17
    • US13312164
    • 2011-12-06
    • Tatsuya Okabe
    • Tatsuya Okabe
    • H01M2/08H01M8/24
    • H01M8/0276H01M8/0247H01M8/0284H01M8/0286H01M8/1004H01M2008/1095Y02P70/56
    • In order to prevent decrease of power generation due to a narrow MEA reaction region, an MEA (2) arranged between a pair of separators (5), a rubber sheet (6) arranged on its planar extension at the outer circumferential side of the MEA (2), and a gasket-like lip line (7) formed at the opposite sides of the rubber sheet (6) integrally therewith to closely contact with the separators (5) are provided, a rubber impregnated portion (8) for integrating the rubber sheet (6) with the MEA (2) by impregnation of a part of rubber composing the rubber sheet (6) into the GDL (4) constituting the MEA (2) is provided at the circumferential edge of the MEA (2), and a GDL constricted portion (9) for regulating the rubber impregnated portion is provided at the immediately inner circumferential side of the rubber impregnated portion (8) in the plane of the MEA (2).
    • 为了防止由于MEA反应区域较窄引起的发电量的降低,设置在一对隔板(5)之间的MEA(2),布置在MEA的外周侧的平面延伸部上的橡胶片(6) (2)和与所述橡胶片(6)的与所述隔板(5)紧密接触的一体地形成在所述橡胶片(6)的相对侧的垫圈状的唇线(7),所述橡胶浸渍部(8) 在MEA(2)的周缘设置有通过将构成橡胶片(6)的橡胶部分的一部分浸渍到构成MEA(2)的GDL(4)中的MEA(2)的橡胶片(6) 并且在MEA(2)的平面中的橡胶浸渍部(8)的紧靠内周侧设置用于调节橡胶浸渍部的GDL收缩部(9)。
    • 9. 发明申请
    • BRAIN INFORMATION OUTPUT APPARATUS, ROBOT, AND BRAIN INFORMATION OUTPUT METHOD
    • 脑信息输出装置,机器人和脑信息输出方法
    • US20120035765A1
    • 2012-02-09
    • US13202784
    • 2010-02-22
    • Masaaki SatoTakahito TamagawaOkito YamashitaYusuke TakedaMitsuo KawatoKentaro YamadaMasahiro KimuraAkihiro TodaTatsuya Okabe
    • Masaaki SatoTakahito TamagawaOkito YamashitaYusuke TakedaMitsuo KawatoKentaro YamadaMasahiro KimuraAkihiro TodaTatsuya Okabe
    • G06F19/00G05B15/00A61B5/00
    • B25J13/00A61B5/0042A61B5/0059A61B5/0073A61B5/0476A61B5/055A61B5/4064A61B5/6814G06F3/015G06N99/005
    • A brain information output apparatus includes an intention determination information storage unit in which two or more pieces of intention determination information can be stored, with each intention determination information including a pair of an intention identifier, and a learning feature amount group including one or more feature amounts extracted from second learning data that is obtained by converting first learning data into intracerebral brain activity data, the first leaning data being acquired from the outside of the cranium of a user when the user performs a trial according to one intention; a first brain activity data acquiring unit that acquires first brain activity data from the outside of the cranium of a user; a second brain activity data acquiring unit that converts the first brain activity data to intracerebral brain activity data, and acquires second brain activity data; a feature amount group acquiring unit that acquires, from the second brain activity data, an input feature amount group including one or more feature amounts; an intention identifier acquiring unit that acquires an intention identifier corresponding to the input feature amount group based on the two or more pieces of intention determination information; and an intention identifier output unit that outputs the intention identifier.
    • 大脑信息输出装置包括意图确定信息存储单元,其中可以存储两个或多个意图确定信息,每个意图确定信息包括一对意图标识符和包括一个或多个特征的学习特征量组 通过将第一学习数据转换为大脑脑活动数据而获得的第二学习数据提取的量,当用户根据一种意图进行试验时,从用户头颅的外部获取第一倾斜数据; 第一脑活动数据获取单元,从用户的头颅的外部获取第一脑活动数据; 第二大脑活动数据获取单元,将第一脑活动数据转换为大脑脑活动数据,并获取第二大脑活动数据; 特征量组获取单元,从第二大脑活动数据获取包括一个或多个特征量的输入特征量组; 意图标识符获取单元,基于所述两个或多个意图确定信息来获取与所述输入特征量组相对应的意图识别符; 以及输出意图标识符的意图标识符输出单元。
    • 10. 发明授权
    • Seal structure for fuel cell and method for producing same
    • 燃料电池的密封结构及其制造方法
    • US08647791B2
    • 2014-02-11
    • US13312164
    • 2011-12-06
    • Tatsuya Okabe
    • Tatsuya Okabe
    • H01M2/08H01M2/14
    • H01M8/0276H01M8/0247H01M8/0284H01M8/0286H01M8/1004H01M2008/1095Y02P70/56
    • In order to prevent decrease of power generation due to a narrow MEA reaction region, an MEA (2) arranged between a pair of separators (5), a rubber sheet (6) arranged on its planar extension at the outer circumferential side of the MEA (2), and a gasket-like lip line (7) formed at the opposite sides of the rubber sheet (6) integrally therewith to closely contact with the separators (5) are provided, a rubber impregnated portion (8) for integrating the rubber sheet (6) with the MEA (2) by impregnation of a part of rubber composing the rubber sheet (6) into the GDL (4) constituting the MEA (2) is provided at the circumferential edge of the MEA (2), and a GDL constricted portion (9) for regulating the rubber impregnated portion is provided at the immediately inner circumferential side of the rubber impregnated portion (8) in the plane of the MEA (2).
    • 为了防止由于MEA反应区域较窄引起的发电量的降低,设置在一对隔板(5)之间的MEA(2),布置在MEA的外周侧的平面延伸部上的橡胶片(6) (2)和与所述橡胶片(6)的与所述隔板(5)紧密接触的一体地形成在所述橡胶片(6)的相对侧的垫圈状的唇线(7),所述橡胶浸渍部(8) 在MEA(2)的周缘设置有通过将构成橡胶片(6)的橡胶部分的一部分浸渍到构成MEA(2)的GDL(4)中的MEA(2)的橡胶片(6) 并且在MEA(2)的平面中的橡胶浸渍部(8)的紧靠内周侧设置用于调节橡胶浸渍部的GDL收缩部(9)。