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公开(公告)号:US20160344048A1
公开(公告)日:2016-11-24
申请号:US15160032
申请日:2016-05-20
Applicant: GENERAL ELECTRIC COMPANY
Inventor: Yao CHEN , Honggang WANG , Yingneng ZHOU , Baoming HUANG , Ralph TEICHMANN
IPC: H01M8/04537 , H01M8/04298 , H01M8/04992 , H01M8/1007 , H01M8/04828
CPC classification number: H01M8/04589 , H01M8/04305 , H01M8/04604 , H01M8/04619 , H01M8/04753 , H01M8/0491 , H01M8/04992 , H01M8/1007 , H01M2008/1293
Abstract: A fuel cell system is disclosed, which includes a fuel cell stack coupled to a load for providing power, a gas delivery system coupled to the fuel cell stack for providing fuel and oxygen to the fuel cell stack and a control system. The control system includes a forward controller for generating a desired control instruction signal based on a command from the load, and a correction controller for generating a control correction signal to avoid violating operational constraints of the fuel cell stack based on at least one measured signal from the fuel cell system. The control system generates a control signal based on the desired control instruction signal and the control correction signal, and controls the gas delivery system based on the generated control signal to ensure the fuel cell stack is operated within safe operating limits. A method for controlling the fuel cell system is also disclosed.
Abstract translation: 公开了一种燃料电池系统,其包括耦合到用于提供电力的负载的燃料电池堆,连接到燃料电池堆的气体输送系统,用于向燃料电池堆提供燃料和氧气以及控制系统。 控制系统包括一个正向控制器,用于基于来自负载的命令产生所需的控制指令信号;以及校正控制器,用于产生控制校正信号,以避免违反燃料电池堆的操作约束, 燃料电池系统。 控制系统基于期望的控制指令信号和控制校正信号产生控制信号,并且基于产生的控制信号来控制气体输送系统,以确保燃料电池堆在安全的操作限度内运行。 还公开了一种用于控制燃料电池系统的方法。
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公开(公告)号:US20170184657A1
公开(公告)日:2017-06-29
申请号:US15309529
申请日:2015-05-14
Applicant: General Electric Company
Inventor: Prabhakar NETI , Yingneng ZHOU , Liwei HAO
CPC classification number: G01R31/1272 , E21B17/003 , E21B41/0092 , E21B43/128 , E21B47/0007 , E21B47/12 , F04D13/0693 , F04D13/086 , G01R31/021 , H01B9/02 , H02G9/02
Abstract: A system (100, 200) is presented. The system includes a fluid lifting device (102, 202) located inside a well (106, 206), and comprising an electrical motor (108, 208), a three phase cable (114, 214) for coupling the fluid lifting device to a power source (112, 212), at least one high sensitivity differential current transformer (104, 203, 204) for generating imbalance signals (128, 227) representative of an imbalance current in at least one of the electrical motor and the three phase cable, wherein the at least one high sensitivity differential current transformer is disposed such that the at least one high sensitivity differential current transformer surrounds at least a portion of the three phase cable, and a processing subsystem (136, 236) for monitoring the health of at least one of the fluid lifting device and the three phase cable based on the imbalance signals.
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