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    • 75. 发明公开
    • GOODS TRANSPORT FACILITY
    • EP2597058A4
    • 2017-12-06
    • EP11809491
    • 2011-05-24
    • DAIFUKU KK
    • YOSHINAGA KAZUHARU
    • B65G1/00A62C3/00B65G1/04B65G43/00
    • B65G1/0421A62C3/002A62C37/36B65G2207/22
    • An article transporting facility is disclosed, which has an object to be detected DH for stop controlling at the ground side, and detecting devices for an object to be detected SH1 and SH2 for detecting the presence of the object to be detected at the movable body 1 side. A movable body controlling device 27 can be freely switched between a first control state, under which the travel control of the movable body 1 is conducted with the aid of an optical ranging device 21, and a second control state, under which the travel control of the movable body 1 is conducted such that the movable body 1 travels until the detecting device for an object to be detected SH1 detects the object to be detected DH corresponding to the article holding section 4 holding the article to be transferred so that the movable body 1 becomes coincident to the target travel position, and during the time when no fire is detected in an article by the fire detecting device 10, the first control state is maintained, whilst once a fire has been detected in an article by the fire detecting device 10, the movable body controlling device is switched to the second control state.
    • 79. 发明公开
    • PURGE AND PRESSURIZATION SYSTEM WITH FEEDBACK CONTROL
    • SPÜL-UND DRUCKSYSTEM MITRÜCKKOPPLUNGSSTEUERUNG
    • EP3140711A1
    • 2017-03-15
    • EP15726763.4
    • 2015-05-01
    • WAYNE FUELING SYSTEMS LLC
    • ROBINSON, Kent W.MOSES, Randy A.
    • G05D16/20B67D7/00
    • A62C2/04A62C3/002A62C3/16B67D7/32G05D16/2066
    • An air purge and pressurization system that utilizes a variable speed fan and a feedback loop to optimize system operation is described herein. In one embodiment, such a system can include an enclosed container located in an area classified as hazardous, a controller rated for operation within the hazardous area, and a pressure sensor located within the container and coupled to the controller. The system can also include a variable-speed fan located outside the hazardous area and coupled to the controller. The controller can be configured to monitor air pressure within the container and variably control a speed of the fan to maintain the detected pressure above a minimum value. Accordingly, a required pressure can be maintained while minimizing a volume of air forced into the container.
    • 本文描述了利用变速风扇和反馈回路来优化系统操作的空气净化和加压系统。 在一个实施例中,这样的系统可以包括位于分类为危险区域的封闭容器,被评定为在危险区域内操作的控制器以及位于容器内并耦合到控制器的压力传感器。 该系统还可以包括位于危险区域外部并耦合到控制器的变速风扇。 控制器可以被配置为监测容器内的空气压力并且可变地控制风扇的速度以将检测到的压力保持在最小值以上。 因此,可以在使被迫进入容器的空气的体积最小化的同时保持所需的压力。