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    • 81. 发明授权
    • Adaptive control apparatus using multiple adaptive control methods
    • 自适应控制装置采用多种自适应控制方法
    • US08457582B2
    • 2013-06-04
    • US12282954
    • 2007-03-15
    • Atsushi YamamotoKoichi OgawaHiroshi IwaiYoshio KoyanagiAkira Kato
    • Atsushi YamamotoKoichi OgawaHiroshi IwaiYoshio KoyanagiAkira Kato
    • H04B1/06
    • H04B7/0851
    • In the adaptive control apparatus, a computation unit computes weighting coefficients, using a first adaptive control method in a proportion α of a first computation amount, where the first adaptive control method has a first convergence rate and a first convergence error. Further, a computation unit computes weighting coefficients from initial values of the weighting coefficients computed by the computation unit, using a second adaptive control method in a proportion (1−α) of a second computation amount, where the second adaptive control method has a second convergence rate slower than the first convergence rate and a second convergence error smaller than the first convergence error. A controller controls determination of a ratio α/(1-α) based on a moving speed of a mobile unit, and controls the computation units to perform computing processes.
    • 在自适应控制装置中,计算单元使用第一自适应控制方法具有第一收敛速度和第一收敛误差的第一计算量的比例α来使用第一自适应控制方法来计算加权系数。 此外,计算单元使用第二自适应控制方法以第二计算量的比例(1-α)计算由计算单元计算的加权系数的初始值的加权系数,其中第二自适应控制方法具有第二 收敛速度比第一收敛速度慢,第二收敛误差小于第一收敛误差。 控制器基于移动单元的移动速度来控制α/(1-α)比率的确定,并且控制计算单元执行计算处理。
    • 82. 发明申请
    • RADIO-CONTROLLED WATCH
    • 无线电控制手表
    • US20130003506A1
    • 2013-01-03
    • US13634403
    • 2011-03-23
    • Akira KatoTakushi HagitaTadashi Yasuoka
    • Akira KatoTakushi HagitaTadashi Yasuoka
    • G04C9/02G04G5/00
    • G05G5/005G04R20/06
    • Provided is a radio-controlled watch capable of performing leap second correction even when information on a leap second is not received from a satellite. Provided is a radio-controlled watch that adjusts time by receiving a signal containing time information from a satellite, the radio-controlled watch being configured to: store a leap second correction value to be used for leap second correction with respect to the time information; display a numerical value corresponding to the leap second correction value; receive an instruction operation of changing the leap second correction value from a user in a state in which the numerical value is displayed; and change the leap second correction value in response to the received instruction operation.
    • 提供了即使在没有从卫星接收到关于闰秒的信息的情况下也能够执行闰秒校正的无线电控制的手表。 提供一种无线电控制手表,其通过从卫星接收到包含时间信息的信号来调整时间,该无线电控制手表被配置为:存储用于相对于时间信息的闰秒校正的闰秒校正值; 显示对应于闰秒校正值的数值; 在显示数值的状态下接收从用户改变闰秒校正值的指令操作; 并且响应于接收到的指令操作来改变闰秒校正值。
    • 86. 发明授权
    • Wireless communication apparatus for simultaneously performing multiple wireless communications
    • 用于同时执行多个无线通信的无线通信装置
    • US08155599B2
    • 2012-04-10
    • US12439103
    • 2007-09-11
    • Akira KatoHiroshi IwaiAtsushi Yamamoto
    • Akira KatoHiroshi IwaiAtsushi Yamamoto
    • H04B1/40
    • H04B1/3805H04B1/005
    • A portable wireless communication apparatus is provided with antenna elements; a mobile phone signal processing circuit; a DTV tuner for receiving DTV low-band frequency signals and DTV high-band frequency signals; impedance matching circuits for the mobile phone signal processing circuit; and impedance matching circuits for the DTV tuner for receiving the DTV low-band frequency signals and DTV high-band frequency signals. A switch is changed to select either the DTV low-band frequency signals or the DTV high-band frequency signals, and output the selected signals to the DTV tuner. A tuner controller controls the switch to select the DTV high-band frequency signals by using the antenna element for transmission from the mobile phone signal processing circuit.
    • 便携式无线通信装置设置有天线元件; 手机信号处理电路; DTV调谐器,用于接收DTV低频信号和DTV高频信号; 用于手机信号处理电路的阻抗匹配电路; 以及用于DTV调谐器的用于接收DTV低频带频率信号和DTV高频带频率信号的阻抗匹配电路。 改变开关以选择DTV低频带频率信号或DTV高频带频率信号,并将选择的信号输出到DTV调谐器。 调谐器控制器通过使用用于从移动电话信号处理电路传输的天线元件来控制开关来选择DTV高频带频率信号。
    • 88. 发明授权
    • Multi-piece solid golf ball
    • 多片固体高尔夫球
    • US07841954B2
    • 2010-11-30
    • US10263642
    • 2002-10-04
    • Keiji MoriyamaAkira Kato
    • Keiji MoriyamaAkira Kato
    • A63B37/04
    • C08G18/758A63B37/0003A63B37/0031A63B37/0033A63B37/0043A63B37/0045A63B37/0062A63B37/0064A63B37/0075A63B37/04A63B37/12
    • The present invention provides a multi-piece solid golf ball, which is superior in flight distance, spin performance and shot feel. The present invention relates to a multi-piece solid golf ball comprising a core consisting of a center and an intermediate layer, and a cover, wherein the center has surface hardness (D) higher than central point hardness by not less than 15, the intermediate layer and cover are formed from thermoplastic resin as a main component and have a thickness of not less than 0.3 to less than 1.0 mm, the cover has a hardness (F) of not less than 35 to less than 55, a hardness of the intermediate layer is higher than D and F, and a difference (A−B) between a deformation amount of the core (A) and that of the golf ball (B) is within the range of not less than 0.15 to less than 0.35 mm.
    • 本发明提供一种多件式实心高尔夫球,其飞行距离,旋转性能和拍摄感觉优越。 本发明涉及一种包括由中心层和中间层构成的芯的多件式固体高尔夫球和一种盖,其中中心具有高于中心点硬度的表面硬度(D)不小于15,中间层 层和盖由热塑性树脂作为主要成分形成,并且具有不小于0.3至小于1.0mm的厚度,该盖的硬度(F)不小于35至小于55,中间层的硬度 层高于D和F,芯(A)的变形量与高尔夫球(B)的变形量之间的差(A-B)在不小于0.15至小于0.35mm的范围内。
    • 89. 发明授权
    • Steering system for motorcycle and motorcycle
    • 摩托车摩托车转向系统
    • US07798511B2
    • 2010-09-21
    • US12507070
    • 2009-07-22
    • Hiroshi TakenakaAkira KatoHaruki Nishimura
    • Hiroshi TakenakaAkira KatoHaruki Nishimura
    • B62K21/04
    • B62K11/14B62K21/04Y10T74/2078Y10T74/20804
    • A steering system for a motorcycle includes a head pipe, a steering stem, a top bridge, a bottom bridge, a front fork, and a steering handlebar. The steering stem is supported by the head pipe. The top bridge has a center portion, a side portion extending from the center portion, and a holding portion provided at the side portion. The top bridge is supported by the steering stem at the center portion to steerably move around the head pipe. The bottom bridge is supported by the steering stem to steerably move around the head pipe. The front fork is held by the top bridge through the holding porting and is held by the bottom bridge. The top bridge has a protruding portion provided on an upper face of the top bridge and extending from the holding portion toward the center portion of the top bridge.
    • 用于摩托车的转向系统包括头管,转向杆,顶桥,底桥,前叉和转向车把。 转向杆由头管支撑。 顶桥具有中心部分,从中心部分延伸的侧部分和设置在侧部的保持部分。 顶桥由中心部分的转向杆支撑,以可操纵地围绕头管移动。 底部桥梁由转向杆​​支撑以可控地围绕头部管道移动。 前叉由顶桥通过保持口固定,并由底桥保持。 顶桥具有设置在顶桥的上表面上并从保持部向顶桥的中心部延伸的突出部。
    • 90. 发明授权
    • Self-calibrating modulator apparatuses and methods
    • 自校准调制装置及方法
    • US07746187B2
    • 2010-06-29
    • US12131417
    • 2008-06-02
    • Wayne S. LeeAkira KatoToru Matsuura
    • Wayne S. LeeAkira KatoToru Matsuura
    • H03C3/00
    • H03C3/0941H03C3/08H03C3/095H03C3/0975H03C3/0991H03C5/00
    • A self-calibrating modulator apparatus includes a modulator having a controlled oscillator and an oscillator gain calibration circuit. The oscillator gain calibration circuit includes an oscillator gain coefficient calculator configured to calculate a plurality of frequency dependent oscillator gain coefficients from results of measurements taken at the output of the controlled oscillator in response to a test pattern signal representing a plurality of different reference frequencies. The plurality of frequency dependent gain coefficients determined from the calibration process are stored in a look up table (LUT), where they are made available after the calibration process ends to scale a modulation signal applied to the modulator. By scaling the modulation signal prior to it being applied to the control input of the controlled oscillator, the nonlinear response of the controlled oscillator is countered and the modulation accuracy of the modulator is thereby improved.
    • 自校准调制器装置包括具有受控振荡器和振荡器增益校准电路的调制器。 振荡器增益校准电路包括振荡器增益系数计算器,其被配置为响应于表示多个不同参考频率的测试模式信号,从受控振荡器的输出处获得的测量结果计算多个频率相关振荡器增益系数。 从校准过程确定的多个与频率相关的增益系数被存储在查找表(LUT)中,在校准过程结束之后它们可用以缩放施加到调制器的调制信号。 通过在将调制信号应用于受控振荡器的控制输入之前缩放调制信号,可以对受控振荡器的非线性响应进行调整,从而提高调制器的调制精度。