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    • 13. 发明授权
    • Communication system, communication device, and communication method with a security policy for communication between devices
    • 通信系统,通信设备和具有用于设备之间通信的安全策略的通信方法
    • US08799638B2
    • 2014-08-05
    • US13077528
    • 2011-03-31
    • Hideaki OgataYoichi Takahashi
    • Hideaki OgataYoichi Takahashi
    • H04L29/06H04L9/16G06F21/60
    • H04L63/0428G06F21/608H04L9/16H04L63/20
    • A first communication device includes a security policy storing unit that store a security policy and a default policy applied to communication to which the security policy is not applied, a communication unit that performs communication, and a communication control unit that performs an encryption process and a decryption process according to the default policy when the communication does not correspond to the target of the policy. A second communication device includes an input and output receiving processing unit that receives an input of an encryption key of the default policy of the first communication device, a communication control unit that generates a policy including an encryption method of the default policy and the input encryption key and performs an encryption process and a decryption process in communication with the first communication device according to the policy, and a communication unit that performs communication of a communication packet.
    • 第一通信设备包括存储安全策略和应用于不应用安全策略的通信的默认策略的安全策略存储单元,执行通信的通信单元和执行加密处理的通信控制单元 解密过程根据默认策略,当通信不符合策略的目标时。 第二通信设备包括输入和输出接收处理单元,其接收第一通信设备的默认策略的加密密钥的输入,生成包括默认策略的加密方法和输入加密的策略的通信控制单元 密钥,并且执行根据策略与第一通信设备通信的加密处理和解密处理,以及执行通信分组的通信的通信单元。
    • 16. 发明申请
    • FUEL INJECTION CONTROL DEVICE AND METHOD FOR MULTI-FUEL ENGINE
    • 燃油喷射控制装置和多燃料发动机的方法
    • US20100101548A1
    • 2010-04-29
    • US12562135
    • 2009-09-18
    • Atsushi ItoYoichi TakahashiHideya Horie
    • Atsushi ItoYoichi TakahashiHideya Horie
    • F02D41/30
    • F02D19/12F02D41/0025F02D41/0235F02D41/06F02D41/1454F02D41/2451F02D2200/0612F02M25/14
    • A fuel injection control device for a multi-fuel engine includes a corrector and a reviewer. An alcohol concentration learning unit is provided to learn an alcohol concentration in an injected fuel based on an oxygen concentration detected in an exhaust gas. A fuel injection amount controller is provided to control a fuel injection amount based on a learning value corresponding to the oxygen concentration. The corrector is configured to reduce the fuel injection amount corresponding to the learning value for a predetermined time period when the learning value is higher than a threshold value when an engine is started. The reviewer is configured to review the learning value to provide a revised learning value based on the oxygen concentration while the corrector reduces the fuel injection amount. The fuel injection amount is controlled based on the revised learning value after the corrector reduces the fuel injection amount.
    • 一种用于多燃料发动机的燃料喷射控制装置,包括校正器和检查器。 提供了一种酒精浓度学习单元,用于基于在废气中检测到的氧浓度来了解喷射的燃料中的酒精浓度。 提供燃料喷射量控制器,用于基于与氧气浓度对应的学习值来控制燃料喷射量。 校正器被配置为当发动机起动时学习值高于阈值时,将与学习值对应的燃料喷射量减小预定时间段。 审查者被配置为审查学习值以提供基于氧浓度的修正学习值,同时校正器减少燃料喷射量。 在校正器减少燃料喷射量之后,基于修正后的学习值来控制燃料喷射量。
    • 18. 发明申请
    • Method for producing a cell culture substrate
    • 细胞培养基质的制造方法
    • US20070243613A1
    • 2007-10-18
    • US11709119
    • 2007-02-20
    • Hideyuki MiyakeHideshi HattoriYoichi Takahashi
    • Hideyuki MiyakeHideshi HattoriYoichi Takahashi
    • C12N5/02B41J2/175
    • B01L3/0268B01L3/5085B01L2200/12B01L2300/069B01L2300/10B01L2300/1888B01L2400/0439C12M23/20C12M25/06C12N5/0068C12N2533/12C12N2535/10
    • A main object of the invention is to provide a new method for producing a cell culture substrate used to cause cells to adhere in a highly precise form onto a base material and then culture the cells. To attain the object, the invention provides a method for producing a cell culture substrate comprising: a patterning substrate forming process of forming, on a base material, a cell culture patterning layer wherein a cell adhesion portion having cell adhesive properties and a cell adhesion-inhibiting portion having cell adhesion-inhibiting properties can be formed by action of a photocatalyst by energy irradiation, thereby forming a patterning substrate; an energy irradiating process of irradiating the energy onto the cell culture patterning layer, thereby forming the cell adhesion portion and the cell adhesion-inhibiting portion in a pattern form by action of the photocatalyst; and a cell-containing liquid applying process of applying a cell-containing liquid onto the cell adhesion portion by a region-selecting applying method of applying the cell-containing liquid selectively onto the patterned cell adhesion portion.
    • 本发明的主要目的是提供一种用于生产细胞培养基质的新方法,该方法用于使细胞以高度精确的形式粘附到基材上,然后培养细胞。 为了达到上述目的,本发明提供一种细胞培养基材的制造方法,其特征在于,包括:在基材上形成细胞培养图案形成层的图案形成基板的形成工序,其中,具有细胞粘合性的细胞粘附部, 通过能量照射可以通过光催化剂的作用形成具有细胞粘附抑制特性的抑制部分,从而形成图案化衬底; 将能量照射到细胞培养图案化层上的能量照射方法,由此通过光催化剂的作用形成图案形式的细胞粘附部分和细胞粘附抑制部分; 以及通过选择性地将细胞含有液体施加到图案化细胞粘附部分上的区域选择施加方法将含细胞的液体施加到细胞粘附部分上的含细胞的液体施加方法。
    • 20. 发明申请
    • Data communication system with optimal damping function
    • 具有最佳阻尼功能的数据通信系统
    • US20060079190A1
    • 2006-04-13
    • US11244145
    • 2005-10-06
    • Tomotake OobaYoichi TakahashiFujio HiguchiKeiichi IwazumiAkira SaitouKeiko Kobayashi
    • Tomotake OobaYoichi TakahashiFujio HiguchiKeiichi IwazumiAkira SaitouKeiko Kobayashi
    • H04B17/00
    • H01Q1/3233B60C23/0408B60C23/0433B60C23/045H01Q1/2241
    • A data communication system includes a plurality of sensor initiators, each of which has first and second antennas; a communication control module and a plurality of sensor communication modules. The communication control module is connected with the plurality of sensor initiators through a LAN and is configured to control the plurality of sensor initiators such that a first electromagnetic wave signal for a command data signal is transmitted through the first antennas. Each of the plurality of sensor communication modules includes at least a sensor and third and fourth antennas. The sensor communication module is configured to receive the first electromagnetic wave signal for the command data signal by a resonance antenna as the third antenna to generate a reception voltage signal, to adjust a damping time of the reception voltage signal, and to transmit a measurement data signal obtained from the sensor to the communication control module from the fourth antenna by a second electromagnetic wave signal through the second antenna in response to the command data signal obtained from the reception voltage signal.
    • 数据通信系统包括多个传感器启动器,每个传感器启动器具有第一和第二天线; 通信控制模块和多个传感器通信模块。 通信控制模块通过LAN与多个传感器启动器连接,并且被配置为控制多个传感器启动器,使得通过第一天线发送用于命令数据信号的第一电磁波信号。 多个传感器通信模块中的每一个至少包括传感器和第三和第四天线。 传感器通信模块被配置为通过谐振天线作为第三天线接收用于命令数据信号的第一电磁波信号,以产生接收电压信号,以调整接收电压信号的阻尼时间,并发送测量数据 响应于从接收电压信号获得的命令数据信号,通过第二天线通过第二电磁波信号从第四天线从通信控制模块向通信控制模块提供信号。