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    • 2. 发明专利
    • Operating device for by-pass switch
    • 用于旁路开关的操作装置
    • JP2014071983A
    • 2014-04-21
    • JP2012215824
    • 2012-09-28
    • Kansai Electric Power Co Inc:The関西電力株式会社Daihen Corp株式会社ダイヘン
    • KANJA SHOJIMORITA TOMOHIKOMATSUURA YASUOTAKAISHI SATOSHIAYABE KOICHISHIGA DAISUKE
    • H01H33/40H01H33/28
    • PROBLEM TO BE SOLVED: To provide an operating device for a by-pass switch whose entire mechanism is reduced in size.SOLUTION: A handle shaft side lever 210 and a main contact shaft side lever 220 are provided. The main contact side lever 220 which is connected to a movable contact is rotatable around a main contact axis 221 as a central axis. A pin 222 is firmly fixed to the main contact side lever 220. The handle shaft side lever 210 is rotatable around a handle shaft 211 as a central axis and is formed into a bent shape so as to abut against the pin 222 of the main contact shaft side lever 220 in a vicinity of the bottom. When forced tripping from the by-pass side to the adjustment device side is carried out, the pin 222 of the main contact shaft side lever 220 is pushed out by a flat part 213 of the handle shaft side lever 210. In this case, the main contact shaft side lever 220 turns, whereby a link arm 230 linked to the main contact shaft side lever 220 and an operating lever 240 turn, and a contact operation is finished to complete the forced tripping.
    • 要解决的问题:提供一种整体机构尺寸减小的旁路开关的操作装置。解决方案:提供手柄轴侧杆210和主接触轴侧杆220。 连接到可动触点的主触头侧杠杆220可以作为中心轴线的主触点轴线221旋转。 销222牢固地固定在主接触侧杠杆220上。把手轴侧杆210可以作为中心轴的手柄轴211旋转,并且形成为弯曲形状,以抵靠主触头的销222 轴侧杠杆220在底部附近。 当从旁路侧到调整装置侧的强制跳闸时,主接触轴侧杠杆220的销222被手柄轴侧杆210的平坦部213推出。在这种情况下, 主接触轴侧杆220转动,由此连接到主接触轴侧杆220和操作杆240的连杆臂230转动,并且完成接触操作以完成强制跳闸。
    • 3. 发明专利
    • Automatic voltage regulator
    • 自动电压调节器
    • JP2014115770A
    • 2014-06-26
    • JP2012268325
    • 2012-12-07
    • Kansai Electric Power Co Inc:The関西電力株式会社Daihen Corp株式会社ダイヘン
    • MATSUURA YASUOMORITA TOMOHIKOKANJA SHOJISHIRATO NORIAKISHOJI KENICHIHISATOMI KAZUO
    • G05F1/20H01F29/04H02J3/12
    • PROBLEM TO BE SOLVED: To provide an automatic voltage regulator which constitutes a tap switching device using an AC thyristor switch of an air specification so as to reduce a cost and enhances easiness of the maintenance.SOLUTION: Tap changeover devices 4u to 4w are constituted by using a three phase alternating current thyristor switch of an air-specification as tap changeover switches A, B, C, T1, T2, and S. The three phase alternating current thyristor switch includes: a main circuit switch for three phases composed of a thyristor; a power supply portion for control for rectifying the three phase voltage taken from one end of the main circuit switch and for outputting a direct current voltage; and a control portion for giving a trigger signal to the thyristor with the output voltage of the power supply for control used as a power supply voltage. The three phase line voltage of all the energization taps connected with the three phase alternating current thyristor is maintained at the minimum operation guarantee voltage or above which is necessary for the three phase alternating current thyristor switch to stably operate by providing a tap te dedicated for grounding other than current-carrying taps ta to td for a low-voltage winding of regulating transformers 3u to 3w.
    • 要解决的问题:提供一种使用空气规格的交流晶闸管开关构成抽头开关装置的自动电压调节器,以降低成本并增加维护的容易度。解决方案:抽头转换装置4u至4w由 使用空气规格的三相交流晶闸管开关作为分接转换开关A,B,C,T1,T2和S.三相交流晶闸管开关包括:三相主电路开关,由三晶闸管 ; 电源部分,用于对从主电路开关的一端取得的三相电压进行整流并输出直流电压; 以及控制部分,用于以用作电源电压的用于控制的电源的输出电压向晶闸管提供触发信号。 与三相交流晶闸管连接的所有通电抽头的三相线电压保持在三相交流晶闸管开关稳定工作所需的最小工作保证电压或以上,提供专用于接地的接头 调压变压器3u〜3w的低压绕组以外的载流用抽头ta〜td。
    • 7. 发明专利
    • Electric power system state estimation device and electric power system using the same
    • 电力系统状态估计装置和使用该电力系统的电力系统
    • JP2013074639A
    • 2013-04-22
    • JP2011209757
    • 2011-09-26
    • Hitachi Ltd株式会社日立製作所Kansai Electric Power Co Inc:The関西電力株式会社
    • YAMANE KENICHIROWATANABE MASAHIROADACHI MASAHIROMINAMI MASAHIROMATSUURA YASUOMORITA TOMOHIKO
    • H02J3/00
    • G01R31/40G05B15/02H02J13/0006H02J13/0079Y02E60/74Y04S10/30
    • PROBLEM TO BE SOLVED: To estimate an electric power state at an arbitrary point of an electric power system with high precision so as to suitably monitor the state of the whole electric power system.SOLUTION: An electric power system state estimation device which has a plurality of sensors arranged at respective places of the electric power system, and estimates the state of the electric power system by using sensor outputs includes: an electric power system data database which holds node information representing the position of the electric power system and facility information including the sensors while making them correspond to each other; a sensor data database which holds the sensor outputs; an estimation environment setting unit which determines sensors to be used when estimating an electric power state at a specified node by using information in the electric power system data database; and a state estimation unit which obtains an output of the sensor from the sensor data database corresponding to the sensor used at the specified node determined by the estimation environment setting unit, and estimates the state of the whole electric power system. The estimation environment setting unit includes means of specifying a sensor installed in the electric power system as a sensor having a singular tendency, and means of changing a sensor used at a node corresponding to the specified sensor.
    • 要解决的问题:为了适当地监视整个电力系统的状态,以高精度估计电力系统的任意点的电力状态。 解决方案:一种电力系统状态估计装置,其具有布置在电力系统的各个位置处的多个传感器,并且通过使用传感器输出来估计电力系统的状态包括:电力系统数据数据库 保持表示电力系统的位置的节点信息和包括传感器的设施信息,使它们彼此对应; 保持传感器输出的传感器数据数据库; 估计环境设置单元,其通过使用电力系统数据数据库中的信息来确定在指定节点估计电力状态时要使用的传感器; 以及状态估计单元,其从与由所述估计环境设定单元确定的所述指定节点处使用的所述传感器对应的所述传感器数据数据库中获取所述传感器的输出,并且估计所述整个电力系统的状态。 估计环境设置单元包括将安装在电力系统中的传感器指定为具有单一趋势的传感器的装置,以及改变在与特定传感器相对应的节点处使用的传感器的装置。 版权所有(C)2013,JPO&INPIT