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    • 24. 发明申请
    • RAPID SHUTDOWN SOLID STATE CIRCUIT FOR PHOTOVOLTAIC ENERGY GENERATION SYSTEMS
    • 用于光伏发电系统的快速关闭固态电路
    • WO2016109461A1
    • 2016-07-07
    • PCT/US2015/067742
    • 2015-12-28
    • SOLARCITY CORPORATION
    • NARLA, SandeepMAYER, AlexJENSEN, Soren
    • H02J3/38
    • H02H7/20H02H7/122H02J1/00H02J3/383H02M7/44Y02E10/563
    • A solid state circuit for performing rapid shutdown of a photovoltaic power generation system includes a pair of high voltage power transistors connected between a photovoltaic array and a pair of high voltage lines that function to supply power generated by the photovoltaic array to a DC to AC inverter. The solid state circuit further includes a control circuit configured so that when the photovoltaic power generation system operates under normal conditions, the control circuit maintains the pair of high voltage power transistors in the on state so that power produced by the photovoltaic array can be transmitted to the DC to AC inverter through the pair of high voltage lines. The control circuit is further configured so that upon receiving a rapid shutdown command, the control circuit turns off the pair of high voltage power transistors to thereby electrically disconnect the photovoltaic array from the pair of power lines.
    • 用于执行光伏发电系统的快速关闭的固态电路包括连接在光伏阵列和一对高压线路之间的一对高压功率晶体管,其功能是将由光伏阵列产生的功率提供给DC至AC逆变器 。 固态电路还包括控制电路,其被配置为使得当光伏发电系统在正常条件下工作时,控制电路将该对高压功率晶体管保持在导通状态,使得由光伏阵列产生的功率可以传输到 直流到交流逆变器通过一对高压线路。 控制电路还被配置为使得在接收到快速关断命令时,控制电路关闭一对高压功率晶体管,从而将光伏阵列与一对电力线电连接。
    • 30. 发明申请
    • BUILDING INTEGRATED PHOTOVOLTAIC SYSTEM WITH GLASS PHOTOVOLTAIC TILES
    • 建设具有玻璃光伏瓦片的集成光伏系统
    • WO2018081300A1
    • 2018-05-03
    • PCT/US2017/058342
    • 2017-10-25
    • SOLARCITY CORPORATION
    • ALMY, Charles BernardoATCHLEY, Brian EdwardBAUTISTA, Garret Anthony
    • H02S40/36H02S20/25
    • H02S20/25H01L31/02H01L31/048H01L31/0488H02S40/34H02S40/36Y02A30/62Y02B10/12
    • Building integrated photovoltaic (BIPV) systems provide for solar panel arrays with improved aesthetics and efficiency that can replace a conventional roof surface structure. These BIPV systems can utilize photovoltaic PV roof tiles defined as glass tiles having photovoltaic elements embedded or incorporated into the body of the roof tile. Such PV roof tiles can include one or more lapping features for interfacing with adjacent tiles and features for electrically connecting multiples tiles within a course to an external power optimizer. Such PV roof tiles can utilize stamped glass that is stamped to define these features within an integrated glass tile and can further include texture, striations on the glass tile and/or color matched back layers or various other components to obscure visibility of any embedded solar cells and provide a more pleasing appearance.
    • 建筑一体化光伏(BIPV)系统为太阳能电池板阵列提供了改进的美学和效率,可以替代传统的屋顶表面结构。 这些BIPV系统可以利用被定义为具有嵌入或结合到屋顶瓦片的主体中的光伏元件的玻璃瓦片的光伏PV屋顶瓦片。 这种PV屋顶瓦片可以包括用于与相邻瓦片接口的一个或多个搭接特征以及用于将路线内的多个瓦片电连接到外部功率优化器的特征。 这样的PV屋顶瓦片可以使用冲压的玻璃,其被冲压以在集成的玻璃瓦片中限定这些特征,并且可以进一步包括玻璃瓦片上的纹理,条纹和/或颜色匹配的背层或各种其他部件以遮挡任何嵌入式太阳能电池的可见性 并提供更令人愉悦的外观。