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    • 14. 发明申请
    • PHOTOVOLTAIC MOUNTING SYSTEM
    • 光伏安装系统
    • WO2016167934A1
    • 2016-10-20
    • PCT/US2016/023996
    • 2016-03-24
    • SOLARCITY CORPORATION
    • MOLINA, DavidHUDSON, Tyrus
    • F24J2/52
    • H02S20/23F24S25/33F24S25/636F24S25/70F24S2025/018F24S2025/6004Y02B10/12Y02E10/47
    • Photovoltaic mounting systems and coupling assemblies for mounting photovoltaic modules are provided. The mounting systems may include short extruded base members that are mounted onto the supporting surface at approximate locations on the supporting surface, and coupling assemblies that may slide along the length of the base members during installation and be locked at particular positions on the length of the base members. The coupling assemblies may be coupled to connectors that in turn couple to two photovoltaic modules. In operation, the installer may first determine approximate locations on which to mount the base members and mount all required base members, and then, place the coupling assemblies at desired locations, lock the coupling assemblies at the desired locations, position the photovoltaic modules in the connectors of the coupling assemblies, and move to the next set of coupling assemblies.
    • 提供了用于安装光伏模块的光伏安装系统和耦合组件。 安装系统可以包括在支撑表面上的大致位置处安装到支撑表面上的短挤压基座构件,以及在安装期间可沿​​着基座构件的长度滑动并且被锁定在长度上的特定位置的联接组件 基地会员 联接组件可以耦合到连接器,其连接到两个光伏模块。 在操作中,安装者可以首先确定安装基座构件并安装所有所需基座构件的大致位置,然后将联接组件放置在所需位置,将耦合组件锁定在所需位置,将光伏组件定位在 联接组件的连接器,并移动到下一组联接组件。
    • 15. 发明申请
    • PHOTOVOLTAIC MOUNTING SYSTEM WITH CHEMICAL FLASHING
    • 具有化学闪光的光伏安装系统
    • WO2016138304A1
    • 2016-09-01
    • PCT/US2016/019630
    • 2016-02-25
    • SOLARCITY CORPORATION
    • ALMY, CharlesHUDSON, TyWEST, Jack Raymond
    • F24J2/52
    • H02S20/23F24S25/61F24S25/636F24S2025/021Y02B10/12Y02B10/20Y02E10/47
    • Photovoltaic mounts having sealant injection systems are provided herein. Such sealant injection systems provide improved directional control of sealant flow and improved sealing of roof penetrations during mounting with one or more fasteners. Such systems can include a bracket assembly (20) having a sealant injection package (60). The sealant injection package (60) can include a collapsible sealant injection reservoir (30) adapted to provide directionally controlled release of sealant upon collapse. Such a system (100) can include sealant injection guide that direct flow of sealant during mounting and can further include a sealant ring (1111) and/or a bell-shaped compressing plate (1116) that seals and encloses the injected sealant to facilitate formation of a chemical flashing and to maintain integrity of the flashing over time. Such systems can be adapted to allow removal and replacement of a sealant injection package (60) or cartridge. Such systems can further be configured as a base assembly with one or more coupling features that maintain the assembly without requiring any additional fasteners.
    • 本文提供了具有密封剂注入系统的光伏安装座。 这种密封剂注射系统在用一个或多个紧固件安装期间提供密封剂流的改进的方向控制和改进的屋顶穿透密封。 这种系统可以包括具有密封剂注射包装(60)的支架组件(20)。 密封剂注射包装(60)可以包括可折叠的密封剂注入储存器(30),其适于在崩溃时提供定向控制的密封剂释放。 这种系统(100)可以包括在安装期间引导密封剂流动的密封剂注入引导件,并且还可以包括密封环(1111)和/或钟形压缩板(1116),该密封环密封和封闭注入的密封剂以促进形成 的化学物质闪烁并保持闪烁的完整性。 这种系统可以适于允许去除和更换密封剂注射包装(60)或药筒。 这样的系统可以进一步配置为具有一个或多个联接特征的基座组件,其保持组件而不需要任何额外的紧固件。
    • 18. 发明申请
    • BUILDING INTEGRATED PHOTOVOLTAIC SYSTEM FOR TILE ROOFS
    • 建筑瓦片屋顶的集成光伏系统
    • WO2018081170A1
    • 2018-05-03
    • PCT/US2017/058147
    • 2017-10-24
    • SOLARCITY CORPORATION
    • FLANIGAN, Daniel PrestonWEST, Jack Raymond
    • H02S20/25
    • Building integrated photovoltaic (BIPV) systems provide for solar panel arrays that can be aesthetically pleasing to an observer, with minimal visible difference between photovoltaic and non-photovoltaic areas of the BIPV system. BIPV systems can be incorporated as part of roof surfaces as built into the structure of the roof, particularly as roofing tiles that have photovoltaic elements embedded or incorporated into the body of the roofing tiles. BIPV systems can also include mimic or dummy tiles that appear similar to tiles with photovoltaic elements, but do not collect solar energy. In some configurations, the appearance of BIPV tile roof systems can be generally uniform to an observer at ground level, where the blending and distribution of photovoltaic and non-photovoltaic elements generate a consistent and elegant appearance that camouflages any differences between photovoltaic tile or non-photovoltaic tiles.
    • 建筑一体化光伏(BIPV)系统为太阳能电池板阵列提供了美观的观察者,BIPV系统的光伏和非光伏区域之间的可见光差异最小。 BIPV系统可以作为屋顶结构中嵌入的屋顶表面的一部分,特别是作为具有嵌入或结合到屋顶瓦片体内的光伏元件的屋顶瓦片。 BIPV系统还可以包括类似于具有光伏元件的瓷砖的模仿或虚拟瓷砖,但不收集太阳能。 在一些配置中,BIPV瓦屋顶系统的外观对于地平面的观察者而言通常是均匀的,其中光伏和非光伏元件的混合和分配产生一致且优美的外观,其伪装光伏瓦片或非光伏瓦片之间的任何差异, 光伏瓦片。
    • 20. 发明申请
    • MULTIPLE INVERTER POWER CONTROL SYSTEMS IN AN ENERGY GENERATION SYSTEM
    • 能源发电系统中的多个逆变器功率控制系统
    • WO2017031007A1
    • 2017-02-23
    • PCT/US2016/046921
    • 2016-08-12
    • SOLARCITY CORPORATION
    • NARLA, Sandeep
    • H02J3/32H02J3/38
    • H02J3/385H02J3/00H02J3/32H02J3/383H02J7/0068H02J7/007H02J7/35H02J2003/388H02M7/00H02M7/44H02M7/537H02M2001/0067H02M2001/007H02M2001/008Y02E10/58Y02E70/30
    • A power control system includes a first inverter power control system and a second inverter power control system coupled in a parallel configuration with the first inverter power control system. Both first and second inverter power control systems may each include an input configured to receive direct current (DC) power; a DC to alternating current (AC) inverter stage configured to receive the DC power input; an anti-islanding relay coupled to the output of the DC/AC inverter stage; and a transition relay coupled to the anti-islanding relay. The transition relay may be configured to route an output of the inverter power control system between one or more onsite back-up loads and an AC grid. The first inverter power control system may be designated as a master that is configured to control the operation of the second inverter power control system designated as a slave.
    • 电力控制系统包括与第一逆变器功率控制系统并联配置的第一逆变器功率控制系统和第二逆变器功率控制系统。 第一和第二逆变器功率控制系统可以各自包括被配置为接收直流(DC)功率的输入; 直流到交流(AC)逆变器级,被配置为接收直流电力输入; 耦合到DC / AC逆变器级的输出的防孤岛继电器; 以及耦合到所述防孤岛继电器的转换继电器。 过渡继电器可以被配置为将逆变器功率控制系统的输出路由在一个或多个现场备用负载和AC电网之间。 第一逆变器功率控制系统可以被指定为被配置为控制被指定为从站的第二逆变器功率控制系统的操作的主站。