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    • 1. 发明申请
    • Device for determining constant of rotating machine
    • 用于确定旋转机器常数的装置
    • US20060290338A1
    • 2006-12-28
    • US10554549
    • 2003-06-06
    • Yoshihiko KinparaMasahiro Fukuta
    • Yoshihiko KinparaMasahiro Fukuta
    • G01R19/00
    • H02P23/14G01R31/343
    • A device for determining a constant of a rotating machine according to the invention includes: test number selecting means 1 for outputting a test number n, selected from 1 to N (N≧2), and outputting a phase signal q determined by a predetermined condition previously set based on the test number n; test means 8 for supplying an alternating voltage to the rotating machine induction machine 5 based on the test number n and the phase signal q and output a reference phase gain and a 90-degree-delay phase gain based on values of the phase signal q corresponding to 1 to N of the test number n; and rotating machine constant calculating means receiving the reference phase gain and the 90-degree-delay phase gain and then calculating a constant of the rotating machine using induction machine 5 the reference phase gain and the 90-degree-delay phase gain.
    • 根据本发明的用于确定旋转机器的常数的装置包括:测试号选择装置1,用于输出从1到N(N> = 2)中选择的测试数n,并输出由预定的 先前根据测试号n设定的条件; 基于测试号n和相位信号q向旋转机械感应电动机5提供交流电压的测试装置8,并且基于相位信号q的相应值的相应值输出参考相位增益和90度延迟相位增益 到1到N的测试号n; 以及旋转机器常数计算装置,接收参考相位增益和90度延迟相位增益,然后使用感应电机5计算旋转机器的参考相位增益和90度延迟相位增益的常数。
    • 2. 发明授权
    • Rotor device having inner rotor and driven outer rotor
    • 具有内转子和从动外转子的转子装置
    • US5044907A
    • 1991-09-03
    • US568629
    • 1990-08-16
    • Koichiro HirosawaTakashi OhmitsuMasahiro Fukuta
    • Koichiro HirosawaTakashi OhmitsuMasahiro Fukuta
    • F01C1/10F04C18/10F04C29/00
    • F04C29/005F04C18/10
    • A rotor device includes a casing, an outer rotor positioned in the casing and rotatable about a first rotational axis, and an inner rotor positioned in the casing and rotatable about a second rotational axis. An outer sealing portion of the inner rotor defines a locus along an inner wall surface of an operating chamber of the outer rotor as a result of the rotation of the inner rotor. An inner sealing portion of the outer rotor defines a locus along an outer circumferential surface of the inner rotor in response to the rotation of the outer rotor. The inner wall surface of the operating chamber engages the outer circumferential surface of the inner rotor through a gear engagement. A driving input shaft portion is connected to the outer rotor and a first gear having teeth on its inner circumferential surface is connected to the outer rotor. A second gear having teeth on its outer circumferential surface is connected to the inner rotor and is engaged with the first gear, whereby the inner rotor is driven by the outer rotor via the first and second gears.
    • 转子装置包括壳体,外转子,其定位在壳体中并可围绕第一旋转轴线旋转;以及内转子,其定位在壳体中并可围绕第二旋转轴线旋转。 内转子的外密封部分由于内转子的旋转而形成沿外转子的操作室的内壁面的轨迹。 外转子的内密封部分响应于外转子的旋转而限定沿着内转子的外圆周表面的轨迹。 操作室的内壁表面通过齿轮接合与内转子的外圆周表面接合。 驱动输入轴部分连接到外转子,并且在其内周表面上具有齿的第一齿轮连接到外转子。 在其外周面上具有齿的第二齿轮连接到内转子并与第一齿轮接合,由此内转子经由第一和第二齿轮由外转子驱动。
    • 6. 发明授权
    • Fuel cell
    • 燃料电池
    • US08728683B2
    • 2014-05-20
    • US12783956
    • 2010-05-20
    • Masahiro FukutaKentaro IshidaTatsuru Shishido
    • Masahiro FukutaKentaro IshidaTatsuru Shishido
    • H01M2/14H01M8/04
    • H01M8/0297H01M8/026H01M8/0267H01M8/0276H01M8/241H01M8/247H01M8/2483H01M2008/1095
    • A cell unit of a fuel cell includes a first separator, a first membrane electrode assembly, a second separator, a second membrane electrode assembly, and a third separator. Resin connecting sections are provided in the outer circumferential ends of the first separator, the second separator, and the third separator. A coupling pin is molded integrally with the resin connecting section of the first separator. A first hole and a second hole are formed on both sides of the coupling pin for selectively inserting a rebuilt pin into either of the first and second holes. A hole for inserting the coupling pin is formed at the center, and the first hole and the second hole are formed on both sides of the hole, in each of the resin connecting sections of the second and third separators.
    • 燃料电池的电池单元包括第一隔板,第一膜电极组件,第二隔板,第二膜电极组件和第三隔板。 树脂连接部设置在第一分离器,第二分离器和第三分离器的外周端部。 联接销与第一分离器的树脂连接部一体模制。 第一孔和第二孔形成在连接销的两侧,用于将重建的销选择性地插入到第一和第二孔中的任一个中。 在第二和第三分离器的每个树脂连接部分的中心形成有用于插入联接销的孔,并且第一孔和第二孔形成在孔的两侧。
    • 8. 发明授权
    • Device for determining constant of rotating machine
    • 用于确定旋转机器常数的装置
    • US07408322B2
    • 2008-08-05
    • US10554549
    • 2003-06-06
    • Yoshihiko KinparaMasahiro Fukuta
    • Yoshihiko KinparaMasahiro Fukuta
    • H02P23/00
    • H02P23/14G01R31/343
    • A device for determining a constant of a rotating machine includes: a test number selector outputting a test number n, selected from 1 to N (N≧2), and outputting a phase signal q determined by a predetermined condition that is previously set based on the test number n; a tester for supplying an alternating voltage to the rotating machine induction machine based on the test number n and the phase signal q and outputing a reference phase gain and a 90-degree-delay phase gain based on values of the phase signal q corresponding to 1 to N of the test number n; and a rotating machine constant calculator receiving the reference phase gain and the 90-degree-delay phase gain and then calculating a constant of the rotating machine using the reference phase gain and the 90-degree-delay phase gain.
    • 用于确定旋转机器的常数的装置包括:输出从1到N(N> = 2)中选择的测试编号n的测试号选择器,并输出由预先设定的预定条件确定的相位信号q 在测试号n; 基于测试号n和相位信号q向旋转机械感应电机提供交流电压的测试器,并且基于对应于1的相位信号q的值输出参考相位增益和90度延迟相位增益 到N的测试号n; 接收参考相位增益和90度延迟相位增益的旋转机械常数计算器,然后使用参考相位增益和90度延迟相位增益来计算旋转机器的常数。
    • 9. 发明申请
    • Control Device for Rotating Machine of Elevator
    • 电梯旋转机控制装置
    • US20070227828A1
    • 2007-10-04
    • US11575509
    • 2004-10-28
    • Yoshihiko KinparaMasahiro Fukuta
    • Yoshihiko KinparaMasahiro Fukuta
    • B66B1/32
    • B66B1/308B66B1/285
    • A control device for a rotating machine driving an elevator suppresses increases in the moving time of the elevator while securing control and stability in accordance with moving direction and load of a car of the elevator. A control device for controlling speed of the rotating machine without using a speed sensor includes a speed command signal generator for generating a rotational speed command for the rotating machine; and a speed sensor-less controller for controlling a voltage applied to the rotating machine without using a speed sensor, based on the rotational speed command from the speed command signal generator. In the control device, the speed command signal generator changes an acceleration running curve in a deceleration interval in accordance with the moving direction and the load of the car of the elevator to generate the rotational speed command.
    • 用于驱动电梯的旋转机械的控制装置可以根据电梯的轿厢的移动方向和负载确保控制和稳定性,从而抑制电梯的移动时间的增加。 用于在不使用速度传感器的情况下控制旋转机器的速度的控制装置包括用于产生旋转机器的转速指令的速度指令信号发生器; 以及速度传感器控制器,其基于来自速度指令信号发生器的转速指令,不使用速度传感器来控制施加到旋转机器的电压。 在控制装置中,速度指令信号发生器根据电梯的轿厢的移动方向和负载,在减速区间内改变加速度行驶曲线,生成转速指令。