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    • 3. 发明授权
    • Electromagnetic actuator for active vibration damping device
    • 主动减震装置电磁执行机构
    • US07810798B2
    • 2010-10-12
    • US11714739
    • 2007-03-07
    • Hiroyuki IchikawaYoshinori WatanabeTakayoshi YasudaMotoshi Sakurai
    • Hiroyuki IchikawaYoshinori WatanabeTakayoshi YasudaMotoshi Sakurai
    • F16F5/00
    • F16F13/26F16F13/106
    • An electromagnetic actuator having: a stator and a movable member disposed in a central hole of a coil member of the stator movable in an axial direction; a coupling rod fixed to the movable member; and an elastic stopper having a ring shaped sealing unit at its outer periphery part, a first stopper unit at its center part, a coupling unit that mutually couples the sealing unit and the first stopper unit, and second stopper units located radially between the sealing unit and the first stopper unit at respective circumferential positions. The sealing unit is compressed between the bottom wall of a housing and a lid member to form a sealing mechanism that fluid-tightly close an opening of an adjustment hole. The first stopper unit axially faces the coupling rod bottom with a first separation distance, and the second stopper units axially face the movable member bottom with a second separation distance greater than the first.
    • 一种电磁致动器,具有:定子和可动构件,其设置在所述定子的线圈构件的中心孔中,所述线圈构件的轴向方向可移动; 连接杆,固定在可动件上; 以及弹性止动件,其外周部具有环形密封单元,其中心部分具有第一止动单元,将密封单元与第一止动单元相互联接的联接单元以及径向位于密封单元之间的第二止动单元 和第一挡块单元。 密封单元在壳体的底壁和盖构件之间被压缩,以形成密封关闭调节孔的开口的密封机构。 第一止动单元以第一分隔距离轴向面对联接杆底部,并且第二止动单元以大于第一间隔距离的第二间隔距离面向可动构件底部。
    • 5. 发明授权
    • Firewall device
    • 防火墙设备
    • US07735129B2
    • 2010-06-08
    • US10544483
    • 2004-02-04
    • Kazuhiko NagataTaisuke OkaRyoichi SuzukiTakashi IkegawaHiroyuki IchikawaTadashi Ishikawa
    • Kazuhiko NagataTaisuke OkaRyoichi SuzukiTakashi IkegawaHiroyuki IchikawaTadashi Ishikawa
    • H04L9/00
    • H04L63/0227H04L63/08H04L63/1466
    • A firewall apparatus including plural virtual firewalls, each virtual firewall including a dependent firewall policy, is disclosed. The firewall apparatus includes: a distribution management table for managing a user name and a virtual firewall ID; a part configured to receive authentication information for network connection from a user terminal, and hold a user name included in the authentication information; a part configured to report the authentication information to the authentication server; and a part configured to receive an authentication response from the authentication server, and hold a user ID, included in the authentication response, to be provided to the user terminal. The firewall apparatus registers the user ID in the distribution management table associating the user ID with the user name.
    • 公开了一种包括多个虚拟防火墙的防火墙设备,每个虚拟防火墙包括依赖的防火墙策略。 防火墙装置包括:用于管理用户名和虚拟防火墙ID的分发管理表; 被配置为从用户终端接收用于网络连接的认证信息并保持包括在认证信息中的用户名的部分; 被配置为将认证信息报告给认证服务器的部件; 以及被配置为从认证服务器接收认证响应并保持包括在认证响应中的用户ID以提供给用户终端的部分。 防火墙装置将用户ID与用户名相关联的分发管理表中登记用户ID。
    • 7. 发明授权
    • Vibration controller for active vibration insulators and method for controlling vibrations for the same
    • 主动振动绝缘子振动控制器及其振动控制方法
    • US07706924B2
    • 2010-04-27
    • US11057757
    • 2005-02-15
    • Hiroyuki IchikawaAtsushi MuramatsuTakayoshi Yasuda
    • Hiroyuki IchikawaAtsushi MuramatsuTakayoshi Yasuda
    • G01M1/38
    • G05B13/0245F16F15/002G05D19/02
    • A vibration controller includes a map controller, an adaptive controller, a set-up frequency judge/switcher, and an actuator. The map controller includes a data map storage for storing data on control signals determined in advance for a vibration insulator, and a signal generator for selecting one of the data, depending on a frequency of a cyclically pulsating signal emitted from a vibration generating source of a vehicle, from the data map storage and generating a control signal. The adaptive controller generates the control signal with respect to the cyclically pulsating signal using an adaptive control method. The set-up frequency judge/switcher switches from the map controller to the adaptive controller or vice versa based on the frequency of the cyclically pulsating signal. The actuator actuates an actuator of the vibration insulator based on the control signal generated by the map controller or the adaptive controller, whereby inhibiting the vehicle from vibrating.
    • 振动控制器包括地图控制器,自适应控制器,建立频率判断器/切换器和致动器。 地图控制器包括用于存储关于预先为振动绝缘体确定的控制信号的数据的数据图存储器,以及用于根据从振动发生源发出的循环脉动信号的频率来选择数据中的一个的信号发生器 车辆,从数据图存储并产生控制信号。 自适应控制器使用自适应控制方法产生相对于循环脉动信号的控制信号。 基于循环脉动信号的频率,设置频率判断/切换器从地图控制器切换到自适应控制器,反之亦然。 执行器基于由地图控制器或自适应控制器产生的控制信号来致动振动绝缘体的致动器,从而阻止车辆振动。
    • 10. 发明授权
    • Active vibration insulator
    • 主动振动绝缘子
    • US07403367B2
    • 2008-07-22
    • US11317049
    • 2005-12-27
    • Takayoshi YasudaHideki OshimaHiroyuki IchikawaDaichi MizushimaTakehiko FushimiKenichi Sato
    • Takayoshi YasudaHideki OshimaHiroyuki IchikawaDaichi MizushimaTakehiko FushimiKenichi Sato
    • H01H47/00
    • G05B13/041F16F13/26F16F15/03F16F2230/24G05B23/0243
    • An active vibration insulator includes an electromagnetic actuator, a control-signals generating device, a driver, a calculator, and a judging device. The electromagnetic actuator generates vibrating forces depending on electric-current supplies. The control-signals generating device generates cyclic control signals based on cyclic pulsating signals output from a vibration generating source of a vehicle. The cyclic control signals actively inhibit vibrations generated by the vibration generating source from transmitting to a specific part of the vehicle. The driver drives the electromagnetic actuator by making the electric-current supplies variable based on the cyclic control signals. The calculator calculates an estimated transfer function composed of estimated values of a transfer function for a transfer system including the electromagnetic actuator and the driver. The judging device judges an inoperative malfunction of the electromagnetic actuator based the estimated transfer function.
    • 主动振动绝缘体包括电磁致动器,控制信号产生装置,驱动器,计算器和判断装置。 电磁执行器根据电流供应产生振动。 控制信号生成装置基于从车辆的振动发生源输出的循环脉动信号生成循环控制信号。 循环控制信号主动地抑制振动发生源产生的振动,从而传递到车辆的特定部分。 驱动器通过使电流供应器基于循环控制信号而变化来驱动电磁致动器。 计算器计算由包括电磁致动器和驱动器的传送系统的传递函数的估计值组成的估计传递函数。 判断装置基于估计的传递函数来判断电磁致动器的不操作故障。