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    • 2. 发明授权
    • Measurement apparatus for measuring fuel capacity used in a fuel cell system
    • 用于测量在燃料电池系统中使用的燃料容量的测量装置
    • US07284426B2
    • 2007-10-23
    • US11220537
    • 2005-09-08
    • Yu Lin TangHsi-Ming ShuFeng-Yi DengYa-Chien Chung
    • Yu Lin TangHsi-Ming ShuFeng-Yi DengYa-Chien Chung
    • G01F23/26
    • H01M8/04186H01M8/04208H01M8/04626H01M8/04634H01M8/1011Y02E60/523
    • The present invention is to provide a measurement apparatus of measuring fuel capacity used in fuel cell system; the measurement apparatus comprises a sensor device, a resistor, an A/D converter and a controller. The sensor device comprises a first electrode and a second electrode and accommodated in fuel storage and/or fuel flow layer to detect the fuel capacity of the anode, the second electrode connects to a low level voltage, one terminal of the resistor connects to the first electrode, the other terminal electrically connects to a high level voltage. The input terminal of the A/D converter connects to the first electrode and the first terminal of the resistor to input a measuring analog voltage, and also converts into a measuring digital voltage, the controller connects to the A/D converter to input measuring digital voltage and converts into the liquid level of the anode fuel in the fuel storage and/or fuel flow layer.
    • 本发明提供一种测量燃料电池系统中使用的燃料容量的测量装置; 测量装置包括传感器装置,电阻器,A / D转换器和控制器。 传感器装置包括第一电极和第二电极,并且容纳在燃料储存和/或燃料流动层中以检测阳极的燃料容量,第二电极连接到低电平电压,电阻的一个端子连接到第一电极 电极,另一端电连接到高电平电压。 A / D转换器的输入端子连接到第一电极和电阻器的第一端子,以输入测量模拟电压,并将其转换为测量数字电压,控制器连接到A / D转换器,以输入测量数字 并在燃料储存和/或燃料流动层中转化成阳极燃料的液面。
    • 3. 发明申请
    • Measurement apparatus for measuring fuel capacity used in a fuel cell system
    • 用于测量在燃料电池系统中使用的燃料容量的测量装置
    • US20060053881A1
    • 2006-03-16
    • US11220537
    • 2005-09-08
    • Yu TangHsi-Ming ShuFeng-Yi DengYa-Chien Chung
    • Yu TangHsi-Ming ShuFeng-Yi DengYa-Chien Chung
    • H01M8/00
    • H01M8/04186H01M8/04208H01M8/04626H01M8/04634H01M8/1011Y02E60/523
    • The present invention is to provide a measurement apparatus of measuring fuel capacity used in fuel cell system; the measurement apparatus comprises a sensor device, a resistor, an A/D converter and a controller. The sensor device comprises a first electrode and a second electrode and accommodated in fuel storage and/or fuel flow layer to detect the fuel capacity of the anode, the second electrode connects to a low level voltage, one terminal of the resistor connects to the first electrode, the other terminal electrically connects to a high level voltage. The input terminal of the A/D converter connects to the first electrode and the first terminal of the resistor to input a measuring analog voltage, and also converts into a measuring digital voltage, the controller connects to the A/D converter to input measuring digital voltage and converts into the liquid level of the anode fuel in the fuel storage and/or fuel flow layer.
    • 本发明提供一种测量燃料电池系统中使用的燃料容量的测量装置; 测量装置包括传感器装置,电阻器,A / D转换器和控制器。 传感器装置包括第一电极和第二电极,并且容纳在燃料储存和/或燃料流动层中以检测阳极的燃料容量,第二电极连接到低电平电压,电阻的一个端子连接到第一电极 电极,另一端电连接到高电平电压。 A / D转换器的输入端子连接到第一电极和电阻器的第一端子,以输入测量模拟电压,并将其转换为测量数字电压,控制器连接到A / D转换器,以输入测量数字 并在燃料储存和/或燃料流动层中转化成阳极燃料的液面。
    • 4. 发明申请
    • DISTRIBUTED CONTROL METHOD FOR FUEL CELL SYSTEM AND THE FUEL CELL SYSTEM OPERATED THEREBY
    • 燃料电池系统和燃料电池系统的分布式控制方法
    • US20070259222A1
    • 2007-11-08
    • US11381699
    • 2006-05-04
    • Hsi-Ming ShuFeng-Yi DengYu-Lin TangYa-Chien Chung
    • Hsi-Ming ShuFeng-Yi DengYu-Lin TangYa-Chien Chung
    • H01M8/04
    • H01M8/04992H01M8/04201H01M8/04313H01M8/04365H01M8/04447H01M8/04955
    • A distributed control method for a fuel cell system is disclosed. An auxiliary power source first provides power for a main control unit and a power management unit during the fuel cell system is turned on. The main control unit repeatedly receives status data of fuel cells from the power management unit or actively inquires of the power management unit to determine whether the fuel cell system is abnormal, and real-time regulates the system to maintain it in an optimal condition. The power management unit detects the status of the fuel cell using sensors, produces a corresponding status datum, and then feeds back the status datum to the main control unit. While the fuel cell system is turned off, fuels residual in flow channels of a fuel cell and un-drained products produced by the electrochemical reaction of a fuel cell are cleaned up, and the last status of the fuel cell before shut off is stored. According to the method, the main control unit and the power management unit keep being actuated no matter whether the fuel cell system is turned on or off. Therefore, the status of fuel cells is monitored continuously, securing the performance thereof.
    • 公开了一种用于燃料电池系统的分布式控制方法。 辅助电源首先在燃料电池系统接通期间为主控制单元和电源管理单元提供电力。 主控制单元重复接收来自电力管理单元的燃料电池的状态数据,或主动查询电力管理单元,以确定燃料电池系统是否异常,并实时调节系统以将其维持在最佳状态。 电源管理单元使用传感器检测燃料电池的状态,产生相应的状态数据,然后将状态数据反馈到主控制单元。 当燃料电池系统关闭时,燃料电池的流动通道中残留的燃料和由燃料电池的电化学反应产生的未排出的产品被清除,并且存储关闭之前的燃料电池的最后状态。 根据该方法,无论燃料电池系统是打开还是关闭,主控制单元和电源管理单元保持致动。 因此,连续监视燃料电池的状态,确保燃料电池的性能。
    • 5. 发明申请
    • CONCENTRATION DETECTOR
    • 浓度检测器
    • US20070137299A1
    • 2007-06-21
    • US11610951
    • 2006-12-14
    • Feng-Yi DengYa-Chien ChungYu-Lin TangYi-Hsien Chen
    • Feng-Yi DengYa-Chien ChungYu-Lin TangYi-Hsien Chen
    • G01N9/00
    • G01N9/18G01N9/16
    • A concentration detector is adapted to detect the concentration of a liquid fuel in a container. The concentration detector comprises a rotating mechanism positioned underneath the level of the liquid fuel and having a rotational center. A first float having a specific gravity less than the specific gravity of the liquid fuel, a volume equivalent to “V” and a mass equivalent to “M”. The distance between the mass center of the first float and the rotational center is “L”. A second float connected with the first float and having a specific gravity less than the specific gravity of the liquid fuel, a volume equivalent to “V” and a mass equivalent to “r*M”. The distance between the mass center of the second float and the rotational center is “L. The mass center of the second float, the rotational center and the mass center of the first float constitute an included angle of 120°. A third float connected to the first float and the second float and having a specific gravity less than the specific gravity of the liquid fuel, a volume equivalent to “V” and a mass equivalent to “r2*M”. The distance between the mass center of the third float and the rotational center is “L. The mass center of the third float, the rotational center and the mass center of the second float constitute an included angle of 120°. Thereby the variation in the concentration of the liquid fuel is acquired by inspecting the change in the rotational direction of the rotating mechanism.
    • 浓度检测器适于检测容器中液体燃料的浓度。 浓度检测器包括位于液体燃料的水平面下方且具有旋转中心的旋转机构。 比重小于液体燃料的比重的第一浮子,相当于“V”的体积和等于“M”的质量。 第一浮子的质心与旋转中心的距离为“L”。 第二浮子与第一浮子连接,比重小于液体燃料的比重,相当于“V”的体积和等于“r * M”的质量。 第二浮子的质心与旋转中心之间的距离为“L”。第二浮子的质量中心,第一浮子的旋转中心和质量中心构成120°的夹角,第三浮子与 第一浮子和第二浮子,其比重小于液体燃料的比重,相当于“V”的体积和等于“r <2> * M”的质量,距离 在第三个浮体的质心与旋转中心之间是“L. 第三浮子的质量中心,第二浮子的旋转中心和质量中心构成120°的夹角。 因此,通过检查旋转机构的旋转方向的变化来获得液体燃料的浓度的变化。
    • 7. 发明授权
    • Concentration detector
    • 浓度检测仪
    • US07409861B2
    • 2008-08-12
    • US11610951
    • 2006-12-14
    • Feng-Yi DengYa-Chien ChungYu-Lin TangYi-Hsien Chen
    • Feng-Yi DengYa-Chien ChungYu-Lin TangYi-Hsien Chen
    • G01N9/00
    • G01N9/18G01N9/16
    • A concentration detector is adapted to detect the concentration of a liquid fuel in a container. The concentration detector comprises a rotating mechanism positioned underneath the level of the liquid fuel and having a rotational center. A first float having a specific gravity less than the specific gravity of the liquid fuel, a volume equivalent to “V” and a mass equivalent to “M”. The distance between the mass center of the first float and the rotational center is “L”. A second float connected with the first float and having a specific gravity less than the specific gravity of the liquid fuel, a volume equivalent to “V” and a mass equivalent to “r*M”. The distance between the mass center of the second float and the rotational center is “L. The mass center of the second float, the rotational center and the mass center of the first float constitute an included angle of 120°. A third float connected to the first float and the second float and having a specific gravity less than the specific gravity of the liquid fuel, a volume equivalent to “V” and a mass equivalent to “r2*M”. The distance between the mass center of the third float and the rotational center is “L. The mass center of the third float, the rotational center and the mass center of the second float constitute an included angle of 120°. Thereby the variation in the concentration of the liquid fuel is acquired by inspecting the change in the rotational direction of the rotating mechanism.
    • 浓度检测器适于检测容器中液体燃料的浓度。 浓度检测器包括位于液体燃料的水平面下方且具有旋转中心的旋转机构。 比重小于液体燃料的比重的第一浮子,相当于“V”的体积和等于“M”的质量。 第一浮子的质心与旋转中心的距离为“L”。 第二浮子与第一浮子连接,比重小于液体燃料的比重,相当于“V”的体积和等于“r * M”的质量。 第二浮子的质心与旋转中心之间的距离为“L”。第二浮子的质量中心,第一浮子的旋转中心和质量中心构成120°的夹角,第三浮子与 第一浮子和第二浮子,其比重小于液体燃料的比重,相当于“V”的体积和等于“r <2> * M”的质量,距离 在第三个浮体的质心与旋转中心之间是“L. 第三浮子的质量中心,第二浮子的旋转中心和质量中心构成120°的夹角。 因此,通过检查旋转机构的旋转方向的变化来获得液体燃料的浓度的变化。
    • 8. 发明申请
    • FUEL CELL DEVICE CAPABLE OF ADJUSTING OPERATIONAL PARAMETERS
    • 能调节运行参数的燃油电池装置
    • US20070099045A1
    • 2007-05-03
    • US11553809
    • 2006-10-27
    • Feng-Yi DengYu-Lin TangYa-Chien Chung
    • Feng-Yi DengYu-Lin TangYa-Chien Chung
    • H01M8/04H01M8/24
    • H01M8/04194H01M8/04089H01M8/0432H01M8/04328H01M8/04365H01M8/04447H01M8/04708H01M8/04753H01M8/04798
    • A fuel cell device capable of adjusting operational parameters is disclosed, which includes fuel cell boards, an anode regulator, a cathode regulator, an anodic fuel supplier, and a control circuit. The fuel cell boards include an electrically connected interface to communicate status signals generated by the fuel cell boards during operation. The anode regulator is connected to the anodic fuel inlets and the anodic fuel outlets of the fuel cell boards and provides anodic fuels with predetermined parameters. The cathode regulator adjusts an amount of cathodic fuels supplied for cathodes of the fuel cell boards. The anodic fuel supplier is connected to the anode regulator and contains anodic fuels. The control circuit receives the status signals from the fuel cell boards, controls the anodic fuel supplier and the anode regulator based on the status signals to make the concentration, flow rate and temperature of anodic fuels injected into the fuel cell boards meet predetermined parameters, and controls the cathodic fuel supplier based on the status signals to make the flow rate of cathodic fuels injected into the fuel cell board meet predetermined parameters.
    • 公开了一种能够调节运行参数的燃料电池装置,其包括燃料电池板,阳极调节器,阴极调节器,阳极燃料供应器和控制电路。 燃料电池板包括电连接的接口,用于在操作期间传送由燃料电池板产生的状态信号。 阳极调节器连接到阳极燃料入口和燃料电池板的阳极燃料出口,并提供具有预定参数的阳极燃料。 阴极调节器调节为燃料电池板的阴极供应的阴极燃料的量。 阳极燃料供应商连接到阳极调节器并且包含阳极燃料。 控制电路接收来自燃料电池板的状态信号,根据状态信号控制阳极燃料供给器和阳极调节器,使燃料电池板中注入的阳极燃料的浓度,流量和温度达到规定的参数, 基于状态信号控制阴极燃料供应商,使得喷射到燃料电池板中的阴极燃料的流量达到预定参数。