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    • 45. 发明申请
    • METHOD OF CONTROLLING TURBINE EQUIPMENT AND TURBINE EQUIPMENT
    • 控制涡轮机设备和涡轮机设备的方法
    • US20110044794A1
    • 2011-02-24
    • US12934015
    • 2009-03-27
    • Hitoi OnoTakashi SonodaNaoto TochitaniMakoto KatoMasahide UmayaFuminori Fujii
    • Hitoi OnoTakashi SonodaNaoto TochitaniMakoto KatoMasahide UmayaFuminori Fujii
    • F01D17/06
    • F02C1/05F01K13/02F01K25/00F02C1/10F02C9/18F05D2260/85F05D2270/30G21D1/02G21D3/08Y02E30/40
    • To provide a method of controlling a turbine equipment and a turbine equipment capable of carrying out a starting operation of controlling a load applied to a speed reducing portion while complying with a restriction imposed on an apparatus provided at a turbine equipment. The invention is characterized in including a speed accelerating step (S1) of increasing a revolution number by driving to rotate a compressing portion and a turbine portion by a motor by way of a speed reducing portion, a load detecting step (S2) of detecting a load applied to the speed reducing portion by a load detecting portion, and a bypass flow rate controlling step (S3) of increasing a flow rate of a working fluid bypassed from a delivery side to a suction side of the compressing portion when an absolute value of the detected load is equal to or smaller than an absolute value of a predetermined value and reducing the flow rate of the bypassed working fluid when equal to or larger than the absolute value of the predetermined value.
    • 提供一种控制涡轮机设备和涡轮机设备的方法,该方法能够执行启动操作,以控制施加在减速部分上的负载,同时符合施加在设置在涡轮机设备上的设备的限制。 本发明的特征在于,包括通过驱动以通过减速部由马达使压缩部和涡轮部旋转来增加转数的加速步骤(S1),检测步骤 负载检测部分施加到减速部分的负载;以及旁路流量控制步骤(S3),当所述压缩部分的绝对值为绝对值时,将从输送侧旁路的工作流体的流量增加到所述压缩部分的吸入侧 检测到的负载等于或小于预定值的绝对值,并且当等于或大于预定值的绝对值时,降低旁路工作流体的流量。
    • 47. 发明授权
    • Data transmission system, data transmission method, and device
    • 数据传输系统,数据传输方式和设备
    • US07711962B2
    • 2010-05-04
    • US10542009
    • 2004-01-19
    • Makoto Kato
    • Makoto Kato
    • G06F11/30G06F12/14
    • H04L9/00H04L9/32H04L2209/80
    • An apparatus (1) on a sending side sends a first signal (S1) containing encrypted data that was encrypted using conversion constants (Y, Zy′), and a conversion constant (X) to an apparatus (1) on the receiving side; the apparatus (1) on the sending side sends a second signal (S2) containing encrypted data that was encrypted using conversion constants (X, Zy′), and a conversion constant (Y), and pattern-conversion constants (Zy) that correspond to conversion constant (Zy′) to a relay apparatus (2). The relay apparatus (2) transfers a second′ signal (S2′) in which a pattern-conversion constant (Zy) in the second signal (S2) has been converted to a conversion constant (Zy′) to the apparatus (1) on the receiving side. The apparatus (1) on the receiving side reads the encrypted data and conversion constants (X, Y, Zy′) from the first signal (S1) and second′ signal (S2′), then decodes and authenticates the encrypted data.
    • 发送侧的装置(1)将包含使用转换常数(Y,Zy')加密的加密数据和转换常数(X)的第一信号(S1)发送到接收侧的装置(1) 发送侧的装置(1)发送包含使用转换常数(X,Zy')和转换常数(Y)加密的加密数据的第二信号(S2),以及对应于图形转换常数(Zy) 到转换常数(Zy')到中继装置(2)。 中继装置(2)将其中第二信号(S2)中的模式转换常数(Zy)已经被转换为设备(1)的转换常数(Zy')的第二信号(S2')传送到 接收方。 接收侧的装置(1)从第一信号(S1)和第二信号(S2')读取加密数据和转换常数(X,Y,Zy'),然后对加密数据进行解码和认证。
    • 50. 发明授权
    • Ultrasonic diagnostic apparatus and ultrasonic diagnostic apparatus control method
    • 超声波诊断仪和超声波诊断仪控制方法
    • US07404798B2
    • 2008-07-29
    • US10519885
    • 2004-03-03
    • Makoto KatoMasahiko Hashimoto
    • Makoto KatoMasahiko Hashimoto
    • A61B8/00
    • A61B5/02007A61B5/0456A61B8/06A61B8/0858A61B8/13A61B8/463A61B8/485A61B8/488G01S7/52042G01S7/52073G01S7/52074G01S15/8979
    • An ultrasonic diagnostic apparatus is provided with an ultrasonic probe driving section 2, a receiving section 5 for amplifying an ultrasonic reflected wave, a phase detecting section 6 for phase-detecting the ultrasonic reflected wave, a velocity computing section 10 for obtaining the velocity of an object to be measured at a plurality of measuring positions on the object to be measured from a phase-detected signal, a computing section 10 for obtaining the deformation amount and/or elastic module between measuring positions of the object to be measured from the velocity, a fluid determining section 9 for determining a fluid portion in the object to be measured in accordance with the phase-detected signal, and an image data generating section 72 for two-dimensionally image-displaying the deformation amount and/or elastic module of the object to be measured in a region other than the fluid portion by using the information determined by the fluid determining section.
    • 超声波诊断装置设置有超声波探头驱动部2,用于放大超声波反射波的接收部5,用于相位检测超声波反射波的相位检测部6,用于获取超声波反射波的速度的速度计算部10 从相位检测信号在被测量物体上的多个测量位置测量的物体;计算部分10,用于根据速度获得被测量物体的测量位置之间的变形量和/或弹性模块; 用于根据相位检测信号确定待测量物体中的流体部分的流体确定部分9和用于二维图像显示物体的变形量和/或弹性模块的图像数据产生部分72 通过使用由流体确定部确定的信息在除了流体部分之外的区域中测量。