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    • 32. 发明申请
    • FUEL CELL SYSTEM
    • 燃油电池系统
    • US20120264029A1
    • 2012-10-18
    • US13445950
    • 2012-04-13
    • Yoshiyuki TAKAMORIShinsuke AndohShuichi Suzuki
    • Yoshiyuki TAKAMORIShinsuke AndohShuichi Suzuki
    • H01M8/04H01M8/24
    • H01M8/04186H01M8/0662
    • A fuel cell system which suppresses a decrease in system efficiency of a fuel cell and, at the same time, allows an emission amount of harmful materials to be reduced for an extended period of time is disclosed. The fuel cell system includes a fuel cell stack generating electric power by chemical reaction between liquid fuel supplied to an anode and oxidant gases supplied to a cathode, and an exhaust mechanism discharging to an outside of the system exhaust gases discharged from the anode of the fuel cell stack, the exhaust mechanism being adapted to emit the exhaust gases into liquid in a tank storing the liquid fuel or water and, thereafter, discharge the exhaust gases to the outside of the system.
    • 公开了一种抑制燃料电池的系统效率降低的燃料电池系统,并且同时允许有害材料的排放量在延长的时间段内减少。 燃料电池系统包括通过供给到阳极的液体燃料和供给阴极的氧化剂气体之间的化学反应产生电力的燃料电池堆,以及排出机构,其排出到从燃料的阳极排出的系统的外部 排气机构适于将废气排放到存储液体燃料或水的罐中的液体中,然后将废气排放到系统的外部。
    • 34. 发明申请
    • Fuel Cell Power System and Operating Method Thereof
    • 燃料电池电源系统及其操作方法
    • US20110076524A1
    • 2011-03-31
    • US12855342
    • 2010-08-12
    • Yoshiyuki TakamoriShuichi SuzukiMakoto MorishimaJun Kawaji
    • Yoshiyuki TakamoriShuichi SuzukiMakoto MorishimaJun Kawaji
    • H01M12/08
    • H01M16/006H01M8/04559H01M8/04753H01M8/04955H01M8/1011H01M10/44H01M10/46Y02E60/523
    • A fuel cell power system and an operating method thereof are proposed in which, the power generation performance of the fuel cell is effectively recovered in a short period of time without additionally requiring any reducing agent or an inactive gas and while minimizing the degradation of the catalyst in use. The fuel cell power system includes a fuel cell stack in which a plurality of cells each having a membrane electrode assembly and a separator are stacked and a secondary battery which can be charged by power generated by the fuel cell stack. The fuel cell power system can supply power from either the fuel cell stack or the secondary battery to an external device. The fuel cell power system is provided with a power generation cell connection/disconnection mechanism for individually connecting and disconnecting a conductor for electrical conduction between the anode and cathode of each cell included in the fuel cell stack which controlled by a control unit.
    • 提出了一种燃料电池动力系统及其操作方法,其中,在短时间内有效地回收燃料电池的发电性能,而不需要任何还原剂或惰性气体,同时使催化剂的降解最小化 正在使用。 燃料电池电力系统包括燃料电池堆,其中堆叠多个具有膜电极组件和隔板的电池单元,以及能够通过由燃料电池堆产生的电力进行充电的二次电池。 燃料电池电源系统可以从燃料电池堆或二次电池向外部设备供电。 燃料电池电力系统设置有用于单独地连接和断开由控制单元控制的燃料电池堆中包括的每个电池的阳极和阴极之间的导电的导体的发电电池连接/断开机构。
    • 39. 发明申请
    • Encryption/decryption method and authentication method using multiple-affine key system
    • 加密/解密方法和使用多重密钥系统的认证方法
    • US20050265546A1
    • 2005-12-01
    • US11100409
    • 2005-04-07
    • Shuichi Suzuki
    • Shuichi Suzuki
    • H04L9/22H04L9/18H04K1/00
    • H04L9/0662H04L9/14H04L2209/805
    • In the encryption/decryption method, a random number sequence {ri} is generated on the basis of a given multiple-affine key system K and encryption is performed by an exclusive OR of the random number sequence {ri} with a plain text. Further, the multiple-affine key system K is automatically sequentially rewritten into a series of new multiple-affine key systems each time when the number of use times of the multiple-affine key system reaches a predetermined number and encryption of plain texts thereafter is continued while generating random numbers using the series of the rewritten multiple-affine key systems. Likewise, in decryption as well, since decryption is performed using a multiple-affine key system automatically rewritten each time when the number of use times reaches a predetermined number, a third party cannot reproduce the multiple-affine key system and therefore cannot decipher a cipher text.
    • 在加密/解密方法中,基于给定的多遍密钥系统K生成随机数序列,并且通过随机数序列{ r }使用纯文本。 此外,多次仿射键系统K自动顺序地重写成一系列新的多重仿射键系统,每当多遍仿射键系统的使用次数达到预定数量时,其后的纯文本的加密继续 同时使用一系列重写的多重仿射键系统产生随机数。 同样地,在解密中也是如此,由于使用多次仿射密钥系统进行解密,所以在每次使用次数达到规定数量的情况下,自动重写的多重仿射密钥系统,第三方不能再现多重仿射密钥系统,因此不能解密密码 文本。