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    • 2. 发明专利
    • REFUELING-MACHINE CONTROLLER
    • JP2003215283A
    • 2003-07-30
    • JP2002012300
    • 2002-01-22
    • TOSHIBA CORPTOSHIBA SYST TECH
    • TANBA TOSHIKAZUAOYAMA HIDEKI
    • G21C5/00G21C19/18
    • PROBLEM TO BE SOLVED: To solve the problem that a refueling operation is separated into an operation on the side of a refueling room and a control rod operation on the side of a central control room so as to be judged mostly by respective operators in a man system, that an operating procedure must be controlled dually, that a transfer of the operating procedure is unefficient such as time- consuming or the like, that the operators must pay attension to each operation, that the operating efficiency of the refueling operation is wrong and that a burden of the operators is large. SOLUTION: A fuel unloading or loading operation during a fuel movement or the control rod operation and a control-rod drawing or insertion operation in a nuclear-reactor periodical inspection are monitored collectively by the refueling-machine controller, the progress of the operations is controlled, the fuel movement operation is made efficient, an operation in an annual inspection of a refueling machine is supported, the burden of the operators or an inspector is reduced, and the fuel movement operation and the control rod operation can be performed safely and in a short period. COPYRIGHT: (C)2003,JPO
    • 3. 发明专利
    • DEVICE AND SYSTEM FOR CONTROLLING FUEL EXCHANGING MACHINE
    • JP2003227895A
    • 2003-08-15
    • JP2002026942
    • 2002-02-04
    • TOSHIBA CORPTOSHIBA SYST TECH
    • SHIMOUCHI YUUZOUTANBA TOSHIKAZUAOYAMA HIDEKIMOTOMURA AKIRA
    • G21C5/00G21C7/08G21C17/00G21C19/18
    • PROBLEM TO BE SOLVED: To simultaneously perform extraction/insertion of control rods and taking out/loading of fuels, when a nuclear reactor is inspected. SOLUTION: The device and the system are provided with a fuel exchanging machine automatization interlock control means, a fuel exchanging machine automatization control means, a core state storage portion for storing states of fuel loading and states of insertion of control rods, a core state supervision means which checks the state of fuel loading of a cell on the basis of a state of fuel loading and a state of insertion of control rods, judges whether or not it is possible to perform fuel movement and extraction/insertion operation of control rods, and records an operation completion result in the core state storage portion, a fuel exchanging procedure storage portion which preserves procedures for fuel movement and procedures for extraction and insertion operation of control rods, and a fuel exchanging procedure progress supervision means which takes out grab and release co-ordinates of the fuel movement procedures successively from the fuel exchanging procedure storage portion, inputs control rod selection information from a control rod inserted state supervision means, reports the grab and release co-ordinates of the fuel movement procedures and the co-ordinates of a control rod to the core state supervision means, and directs fuel movement work if the grab and release co-ordinates of the fuel movement procedures do not correspond to the co-ordinates of fuels around the selected control rod. COPYRIGHT: (C)2003,JPO
    • 4. 发明专利
    • REACTOR CORE WORK MONITORING DEVICE AND MONITORING METHOD AT PERIODIC INSPECTION
    • JP2002014191A
    • 2002-01-18
    • JP2000200314
    • 2000-06-30
    • TOSHIBA CORP
    • NISHIMURA SATOSHIAOYAMA HIDEKI
    • G21C17/06G21C17/00G21C19/18
    • PROBLEM TO BE SOLVED: To provide a reactor core work monitoring device which solves the problem that conventionally a reactor core work cannot be monitored in a reactor core work monitoring device at periodic inspection, when a fuel exchange control device is in a mode other than the automatic mode. SOLUTION: The reactor core work monitoring device is provided with a means for detecting an operation mode of a fuel exchange control device; a means for reading-in a fuel exchange procedure data previously prepared for a fuel exchange; a means for reading-in a fuel number and procedure target position included in the fuel exchange procedure data; a means for fetching a target position which the fuel exchange control device sets prior to a movement of fuel each time; a means for comparing the procedure target position of fuel of the fuel number, which the fuel number/procedure target position reading-in means reads-in with a target position which the target set data reading-in means reads-in and monitoring a coincidence/ incoincidence of both positions when the fuel exchange control device is at an operation mode other than the automatic mode; and an alarm generating means for informing that the target position set by the fuel exchange control device is erroneous, when the procedure target position does not coincide with the target position.
    • 5. 发明专利
    • Remote monitoring control device and system
    • 远程监控控制设备和系统
    • JP2008040750A
    • 2008-02-21
    • JP2006213549
    • 2006-08-04
    • Toshiba Corp株式会社東芝
    • USUI YUKIHIROKATAJIMA TETSUOMINAMIMEI KAZUHIKOISHIMA MITSUHIDEAOYAMA HIDEKITOTSUKA SHINICHI
    • G06F13/00G06F11/30
    • PROBLEM TO BE SOLVED: To provide a remote monitoring control device capable of rebooting a monitoring object computer or temporarily stopping and activating a computer running process remotely from a mobile terminal.
      SOLUTION: The remote monitoring control device monitors the resource state of a monitoring control object computer 11 in a resource monitoring part 17, and in finding an abnormal sign, notifies the mobile terminal 20 of a manager from a mail transmission part 18 through the Internet 19. The manager issues a computer reboot request or a process temporary stoppage/activation request from the mobile terminal 20. The computer reboot request or the process temporary stoppage/activation request is received in a remote request reception - interaction part 22, a computer system management part 14 or a process management part 27 is notified from a request decoding part 26, and the processing of computer reboot or process temporary stoppage/activation is performed.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够重新启动监视对象计算机或者从移动终端远程暂时停止和激活计算机运行进程的远程监控控制装置。 解决方案:远程监视控制设备监视资源监视部分17中的监视控制对象计算机11的资源状态,并且在发现异常标志时,从邮件发送部分18向管理者的通知移动终端20通过 互联网19.管理器从移动终端20发出计算机重新启动请求或进程临时停止/激活请求。计算机重新启动请求或进程临时停止/激活请求在远程请求接收 - 交互部分22中接收 计算机系统管理部分14或进程管理部分27从请求解码部分26通知,并且执行计算机重新启动或处理临时停止/激活的处理。 版权所有(C)2008,JPO&INPIT
    • 6. 发明专利
    • CORE WORK MONITOR IN PERIODIC INSPECTION
    • JPH0943382A
    • 1997-02-14
    • JP19935195
    • 1995-08-04
    • TOSHIBA CORP
    • AOYAMA HIDEKI
    • G21C17/06G21C17/10
    • PROBLEM TO BE SOLVED: To safely perform fuel transfer work and a control rod operation in a short time without bypassing an existing interlock on a periodic inspection for a reactor. SOLUTION: A core work monitor is so constituted that a fuel transfer information storage means 11 for storing data showing a loading state of fuel in a core, which is obtained from a fuel exchange controller 5 via a process input/output means 9, a cell mask detection means 13 which detects a state of taken out all of four fuels in the circumference of a control rod, namely, a vacant cell, based on the fuel loading state data and outputs cell mask instruction 13, which excludes the vacant cell from a monitoring object core region in a control rod operation monitor 7, to the control rod operation monitoring device 7 by the request of an operator, a display control means 17 for framing graphic information based on the fuel loading state and cell mask information, and a display 19 for displaying the framed graphic information.
    • 7. 发明专利
    • Fuel handling device
    • 燃油处理装置
    • JP2003294881A
    • 2003-10-15
    • JP2002095501
    • 2002-03-29
    • Toshiba CorpToshiba Syst Technol Corp東芝システムテクノロジー株式会社株式会社東芝
    • SHIMOUCHI YUUZOUMOTOMURA AKIRAZAMA EIJIOKADA KOJIAOYAMA HIDEKI
    • G21C19/18
    • PROBLEM TO BE SOLVED: To supervise and operate a nuclear fuel handling device at a remote place separated from a reactor core.
      SOLUTION: This device has a grasping machine 70 for grasping a fuel; a hoist 13 for moving the grasping machine in vertical directions; a horizontally moving means 31, 32 for moving the hoist 13 in horizontal directions; an operation means 16 for operating the grasping machine 70, the hoist 13, and the moving means 31, 32; a photographing means 12 for photographing the grasping machine 70 and fuels; an image display means 15 for displaying images photographed by the photographing means 12 in the vicinity of the operation means 16; and an operating state display means 17 which displays the operating states of the grasping machine 70 and the hoist 13 in the vicinity of the operation means 16.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:监督和操作与反应堆堆芯分离的远程处的核燃料处理装置。 解决方案:该装置具有用于抓取燃料的把持机70; 用于在垂直方向上移动抓取机的提升机13; 水平移动装置31,32,用于使葫芦13沿水平方向移动; 用于操作抓取机70,起重机13和移动装置31,32的操作装置16; 用于拍摄抓取机70和燃料的拍摄装置12; 用于在操作装置16附近显示由拍摄装置12拍摄的图像的图像显示装置15; 以及操作状态显示装置17,其在操作装置16附近显示抓握机70和提升机13的操作状态。版权所有(C)2004,JPO
    • 10. 发明专利
    • METHOD AND DEVICE FOR CONTROLLING REFUELING MACHINE AND RECORDING MEDIUM
    • JPH11174193A
    • 1999-07-02
    • JP34042097
    • 1997-12-10
    • TOSHIBA CORP
    • AOYAMA HIDEKITANBA TOSHIKAZUARAKAWA AKIO
    • G21C19/18G05D3/12
    • PROBLEM TO BE SOLVED: To shorten further the time for refueling. SOLUTION: This device is provided with a means 47 for setting a traveling route in the shortest time, storage 49 of the traveling route, and a means 45 for management control of a bridge/trolley. On the basis of a final target position to be inputted, a traveling route is computed that enables a bridge 7 and a trolley 9 to travel from their present position to their final target position in the shortest time. From a transit target position of the traveling route, the means 47 sets a control starting condition and the target position and the maximum speed that are controlled by the condition as to the bridge and the trolley. The storage 49 of the traveling route stores the data set by the means 47. When the data of the present position of the bridge 7 and the trolley 9 coincide with the control starting condition in the storage 49, the means 45 outputs the control target position and the maximum speed that correspond to the control starting condition to a means 41 for controlling the speed of the bridge speed and a means 43 for controlling the speed of the trolley respectively.