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    • 3. 发明授权
    • Phase-control switchgear and phase-control method for switchgear
    • 开关柜的相位控制开关柜和相位控制方法
    • US08526155B2
    • 2013-09-03
    • US13129690
    • 2008-12-25
    • Sadayuki KinoshitaKenji KameiTomohito MoriHiroki Ito
    • Sadayuki KinoshitaKenji KameiTomohito MoriHiroki Ito
    • H01H73/00H02H7/00H02H3/00G05D17/00
    • H01H9/563
    • A phase-control switchgear includes a circuit breaker, a phase difference detection unit, a storage unit, and a circuit breaker control unit. The phase difference detection unit detects a phase difference between voltages of a specific phase (U-phase) of buses to which three-phase generators are respectively connected, at a plurality of time points. The storage unit stores the detected phase differences. When the three-phase generators are out of synchronization, the circuit breaker control unit estimates a breaking time point at which the phase difference between the voltages of the U-phase of the buses will be in the range of not less than −80° and not more than 80°, based on the phase differences at the plurality of time points stored in the storage unit. The circuit breaker control unit opens the circuit breaker to break a current at the estimated breaking time point. This makes it possible to suppress a transient voltage generated between electrodes of the circuit breaker after the current is broken.
    • 相位控制开关装置包括断路器,相位差检测单元,存储单元和断路器控制单元。 相位差检测单元在多个时间点检测分别连接有三相发电机的母线的特定相位(U相)的电压之间的相位差。 存储单元存储检测到的相位差。 当三相发电机不同步时,断路器控制单元估计总线的U相电压之间的相位差在-80°以上的断开时间点,以及 基于存储在存储单元中的多个时间点的相位差,不大于80°。 断路器控制单元打开断路器以在估计的断开时间点断开电流。 这使得可以在电流断开之后抑制断路器的电极之间产生的瞬态电压。
    • 4. 发明申请
    • PHASE-CONTROL SWITCHGEAR AND METHOD OF CONTROLLING SWITCHGEAR
    • 相控开关和控制开关的方法
    • US20110228437A1
    • 2011-09-22
    • US13129690
    • 2008-12-25
    • Sadayuki KinoshitaKenji KameiTomohito MoriHiroki Ito
    • Sadayuki KinoshitaKenji KameiTomohito MoriHiroki Ito
    • H01H73/02
    • H01H9/563
    • A phase-control switchgear includes a circuit breaker, a phase difference detection unit, a storage unit, and a circuit breaker control unit. The phase difference detection unit detects a phase difference between voltages of a specific phase (U-phase) of buses to which three-phase generators are respectively connected, at a plurality of time points. The storage unit stores the detected phase differences. When the three-phase generators are out of synchronization, the circuit breaker control unit estimates a breaking time point at which the phase difference between the voltages of the U-phase of the buses will be in the range of not less than −80° and not more than 80°, based on the phase differences at the plurality of time points stored in the storage unit. The circuit breaker control unit opens the circuit breaker to break a current at the estimated breaking time point. This makes it possible to suppress a transient voltage generated between electrodes of the circuit breaker after the current is broken.
    • 相位控制开关装置包括断路器,相位差检测单元,存储单元和断路器控制单元。 相位差检测单元在多个时间点检测分别连接有三相发电机的母线的特定相位(U相)的电压之间的相位差。 存储单元存储检测到的相位差。 当三相发电机不同步时,断路器控制单元估计总线的U相电压之间的相位差在-80°以上的断开时间点,以及 基于存储在存储单元中的多个时间点的相位差,不大于80°。 断路器控制单元打开断路器以在估计的断开时间点断开电流。 这使得可以在电流断开之后抑制断路器的电极之间产生的瞬态电压。
    • 5. 发明授权
    • Incoming current suppression device
    • 进电流抑制装置
    • US07696648B2
    • 2010-04-13
    • US12051498
    • 2008-03-19
    • Sadayuki KinoshitaKenji KameiTomohito MoriHiroki Ito
    • Sadayuki KinoshitaKenji KameiTomohito MoriHiroki Ito
    • H01H47/00H01H47/02
    • H02H9/002Y10T307/826
    • A control unit of an electric power supply system causes, responsive to a closing command signal, a switch corresponding to R phase to be thrown at a timing when a stationary magnetic flux and a residual magnetic flux of R phase are coincident with each other and then subsequently causes other switches corresponding to S phase and T phase to be thrown at a timing which is delayed from a zero point of an alternating voltage of R phase by a predetermined phase angle of 0-30 degrees, such that the difference of the stationary magnetic flux and the residual magnetic flux of each of S phase and T phase is minimum. Therefore, an exciting incoming current which flows into a three-phase transformer at a time of throwing a three-phase breaker provided with interpole capacitors can be suppressed.
    • 电源系统的控制单元响应于闭合指令信号,在R相的固定磁通和残余磁通量相互一致的时刻引起对应于R相的开关,并且然后 随后使得对应于S相和T相的其它开关在从R相的交流电压的零点延迟了0-30度的预定相位角的定时处被抛出,使得固定磁 S相和T相各自的磁通量和残余磁通量最小。 因此,可以抑制在设置有极间电容器的三相断路器投入时流入三相变压器的励磁输入电流。
    • 6. 发明申请
    • INCOMING CURRENT SUPPRESSION DEVICE
    • 采用电流抑制装置
    • US20090097173A1
    • 2009-04-16
    • US12051498
    • 2008-03-19
    • Sadayuki KINOSHITAKenji KameiTomohito MoriHiroki Ito
    • Sadayuki KINOSHITAKenji KameiTomohito MoriHiroki Ito
    • H02H7/04H02H3/08H02H3/00
    • H02H9/002Y10T307/826
    • A control unit of an electric power supply system causes, responsive to a closing command signal, a switch corresponding to R phase to be thrown at a timing when a stationary magnetic flux and a residual magnetic flux of R phase are coincident with each other and then subsequently causes other switches corresponding to S phase and T phase to be thrown at a timing which is delayed from a zero point of an alternating voltage of R phase by a predetermined phase angle of 0-30 degrees, such that the difference of the stationary magnetic flux and the residual magnetic flux of each of S phase and T phase is minimum. Therefore, an exciting incoming current which flows into a three-phase transformer at a time of throwing a three-phase breaker provided with interpole capacitors can be suppressed.
    • 电源系统的控制单元响应于闭合指令信号,在R相的固定磁通和残余磁通量相互一致的时刻引起对应于R相的开关,并且然后 随后使得对应于S相和T相的其它开关在从R相的交流电压的零点延迟了0-30度的预定相位角的定时处被抛出,使得固定磁 S相和T相各自的磁通量和残余磁通量最小。 因此,可以抑制在设置有极间电容器的三相断路器投入时流入三相变压器的励磁输入电流。
    • 10. 发明申请
    • Switchgear control apparatus
    • 开关柜控制装置
    • US20080123234A1
    • 2008-05-29
    • US11907054
    • 2007-10-09
    • Haruhiko KoyamaTomohito MoriKenji KameiSadayuki Kinoshita
    • Haruhiko KoyamaTomohito MoriKenji KameiSadayuki Kinoshita
    • H02H3/00
    • H01H9/56H01H9/563
    • A switchgear control apparatus includes a zero point interval detecting circuit, an interruption time judgment circuit and a reclosing time decision circuit. The zero point interval detecting circuit detects time intervals between successive zero points of a main circuit current. The interruption time judgment circuit judges that interruption time of the main circuit current is time of a zero point immediately preceding a zero point at which a difference between the time interval between two successive zero points and half the period of a commercial AC voltage exceeds a specific value. Upon detecting the gradient of the main circuit current at the interruption time, the reclosing time decision circuit sets reclosing time at a point in phase where the AC voltage has a maximum negative value if the gradient is positive, and at a point in phase where the AC voltage has a maximum positive value if the gradient is negative.
    • 一种开关设备控制装置,包括零点间隔检测电路,中断时间判断电路和重合闸时间判定电路。 零点间隔检测电路检测主电路电流的连续零点之间的时间间隔。 中断时间判断电路判断主电路电流的中断时间是紧邻零点之间的零点的时间,在该零点之间,两个连续的零点之间的时间间隔与商用交流电压的一半的时间间隔之间的差超过特定的 值。 在检测到中断时的主电路电流的梯度时,重合闸时间决定电路将梯形为正的交流电压为最大负值的同相位置的重新闭合时间设定在同相位置 如果梯度为负,则交流电压具有最大正值。