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    • 1. 发明申请
    • SOLAR CELL UNIT AND SOLAR CELL MODULE
    • 太阳能电池单元和太阳能电池模块
    • US20080210288A1
    • 2008-09-04
    • US12039907
    • 2008-02-29
    • Shihomi NakataniTakaaki NakajimaYasuo KadonagaKunimoto Ninomiya
    • Shihomi NakataniTakaaki NakajimaYasuo KadonagaKunimoto Ninomiya
    • H01L31/042
    • H01L31/0504Y02E10/50
    • A solar cell unit includes first and second solar cells (C1, C2), a first wiring member, a second wiring member, and a third wiring member. The first solar cell (C1) and the second solar cell (C2) each having a first principle surface and a second principle surface opposite the first principle surface, a polarity of the second principle surface being different from a polarity of the first principle surface. The first wiring member electrically connects electrodes, formed on surfaces pointing at a first direction, of the first solar cell (C1) and the second solar cell (C2). The second wiring member is electrically connected to an electrode, formed on a surface pointing at a second direction, of the first solar cell (C1). The third wiring member is electrically connected to an electrode, formed on a surface pointing at the second direction, of the second solar cell (C2).
    • 太阳能电池单元包括第一和第二太阳能电池(C 1,C 2),第一布线构件,第二布线构件和第三布线构件。 第一太阳能电池(C 1)和第二太阳能电池(C 2)各自具有与第一原理表面相对的第一主表面和第二原理表面,第二主表面的极性与第一原理的极性不同 表面。 第一布线构件电连接形成在第一太阳能电池(C 1)和第二太阳能电池(C 2)的第一方向的表面上的电极。 第二布线构件电连接到形成在第一太阳能电池(C 1)的指向第二方向的表面上的电极。 第三配线构件电连接到形成在第二太阳能电池(C 2)的指向第二方向的表面上的电极。
    • 10. 发明授权
    • Diagnosis method and diagnosis apparatus of photovoltaic power system
    • 光伏电力系统诊断方法及诊断装置
    • US06892165B2
    • 2005-05-10
    • US09800515
    • 2001-03-08
    • Yasuhiro YagiKunimoto Ninomiya
    • Yasuhiro YagiKunimoto Ninomiya
    • G01R31/00G01R31/26G06F11/30G21C17/00H01L31/042
    • H02S50/10Y10S136/29
    • A reference output characteristic of a photovoltaic power system at the time of normal operation is obtained in accordance with an installation condition (topography of installation site, meteorological condition, configuration of the system itself, or the like) of the photovoltaic power system, an output characteristic in the photovoltaic power system during operation is actually measured, the obtained reference output characteristic and the measured output characteristic are compared and, based on the comparison result, the normality/abnormality of the output is diagnosed and, at the same time, the cause is diagnosed in the case of abnormality. The reference output characteristic at the time of normal operation can also be obtained based on the measured value of the past output characteristic.
    • 根据光伏电力系统的安装条件(安装地点的安装地点,气象条件,系统本身的配置等)获得正常工作时的光伏电力系统的参考输出特性,输出 实际测量光伏电力系统的运行特性,比较所获得的参考输出特性和测量输出特性,并根据比较结果诊断出输出的正常/异常,同时, 在异常情况下被诊断。 也可以基于过去的输出特性的测量值来获得正常工作时的基准输出特性。