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    • 41. 发明授权
    • Fuel cell system operation method
    • 燃料电池系统运行方式
    • US08129062B2
    • 2012-03-06
    • US12819519
    • 2010-06-21
    • Yoshikazu TanakaTerumaru HaradaShinji MiyauchiTetsuya Ueda
    • Yoshikazu TanakaTerumaru HaradaShinji MiyauchiTetsuya Ueda
    • H01M8/04
    • H01M8/04156H01M8/04029H01M8/04119H01M8/04126H01M8/04134H01M8/04141H01M8/0662
    • A method of operating fuel cell system includes generating electricity by a fuel cell using fuel gas and oxidizing gas and allowing cooling water to flow in the fuel cell and thereby cooling the fuel cell. The method includes transferring moisture from exhaust gas to supply gas using a first humidifier, the exhaust gas being discharged from the fuel cell, the supply gas being supplied to the fuel cell, and transferring moisture from the cooling water to the supply gas humidified using a second humidifier. The method includes at least one of detecting humidity of the supply gas humidified, detecting temperature of the cooking water, detecting the flow rate of the supply gas and detecting the amount of electricity generated by the fuel cell. The method also includes controlling the humidity of the supply gas humidified based on the value detected.
    • 操作燃料电池系统的方法包括使用燃料气体和氧化气体的燃料电池发电,并允许冷却水在燃料电池中流动,从而冷却燃料电池。 该方法包括:使用第一加湿器将废气中的水分输送到供给气体,排出气体从燃料电池排出,供给气体供给燃料电池,并将湿气从冷却水输送至使用 第二加湿器 该方法包括检测加湿的供给气体的湿度,检测烹调用水的温度,检测供给气体的流量和检测燃料电池产生的电量中的至少一种。 该方法还包括基于所检测的值来控制加湿的供给气体的湿度。
    • 43. 发明申请
    • TRANSMISSION LINE MICROWAVE APPARATUS INCLUDING AT LEAST ONE NON-RECIPROCAL TRANSMISSION LINE PART BETWEEN TWO PARTS
    • 传输线微波设备包括两个部分之间的一个非双向传输线路部分
    • US20100060388A1
    • 2010-03-11
    • US12530102
    • 2008-03-05
    • Tetsuya Ueda
    • Tetsuya Ueda
    • H01P3/08
    • H01Q1/38H01P1/203H01P1/207H01P1/32H01Q13/206
    • A transmission line microwave apparatus includes at least one nonreciprocal transmission line part, which includes a series branch circuit equivalently including a capacitive element and a shunt branch circuit equivalently including an inductive element. The nonreciprocal transmission line part has gyrotropic characteristic by being magnetized in a magnetization direction different from the propagation direction of a microwave, and has an asymmetric structure to a plane formed by the propagation direction and the magnetization direction. The nonreciprocal transmission line part has a propagation constant and an operating frequency set in a dispersion curve that represents a relation between the propagation constant and the operating frequency so that the propagation constant in the forward direction and the propagation constant in the backward direction have nonreciprocal phase characteristics different from each other. A microwave transmission line is constituted by cascade-connecting at least one non-reciprocal transmission line part between first and second ports.
    • 传输线微波装置包括至少一个不可逆传输线部分,其包括等效地包括电容元件的串联分支电路和等效地包括电感元件的分流分支电路。 不可逆传输线部分通过在与微波的传播方向不同的磁化方向上磁化而具有陀螺特性,并且具有与由传播方向和磁化方向形成的平面不对称的结构。 不可逆传输线部分具有传播常数和在表示传播常数与工作频率之间的关系的色散曲线中设定的工作频率,使得正向传播常数和反向传播常数具有非相互相位 特征彼此不同。 微波传输线通过级联连接第一和第二端口之间的至少一个不可逆传输线部分而构成。