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    • 1. 发明申请
    • PHOTOVOLTAIC MOUNTING SYSTEM WITH SEALANT INJECTOR INLET
    • 带密封剂注入口的光伏安装系统
    • WO2017165076A1
    • 2017-09-28
    • PCT/US2017/019479
    • 2017-02-24
    • SOLARCITY CORPORATION
    • SEERY, MartinBAUTISTA, Garret
    • F24J2/52
    • H02S20/23E04D13/00F24S25/60F24S25/61F24S2025/021Y02B10/12Y02B10/20Y02E10/47
    • Photovoltaic mounting systems (500) that form chemical flashings are provided herein. Such mounting systems (500) include a mounting plate (510) adapted to interface with an off-the-shelf mounting puck (20) so as to allow mounting of the puck (20) on the roof surface without use of traditional roof flashing (30) and/or modification of shingles (S) of the roof surface. Such mounting plates (510) include a top surface adapted to interface with the puck (20) and a bottom surface that defines a cavity(530) between the mounting plate (510) and the puck (20) in which to form the chemical flashing by injecting a flowable sealant into the cavity (530) via an inlet (531) of the mounting plate (510) that remains accessible from outside the puck (20) during mounting. Such mounting plates (510) can further include features for orienting the plate (510), directing runoff away from any sealed roof penetrations and filling of the cavity (530) with flowable sealant.
    • 本文提供了形成化学闪蒸的光伏安装系统(500)。 这种安装系统(500)包括安装板(510),该安装板适于与现成的安装盘(20)对接,以便允许将盘(20)安装在屋顶表面上而不使用传统的屋顶防水板( 30)和/或屋顶表面的瓦(S)的修改。 这样的安装板(510)包括适于与圆盘(20)接合的顶表面和限定安装板(510)与圆盘(20)之间的空腔(530)的底表面,在所述空腔中形成化学闪蒸 通过安装板(510)的入口(531)将可流动的密封剂注入空腔(530)中,该安装板在安装期间可从圆盘(20)的外部接近。 这种安装板(510)可以进一步包括用于定向板(510)的特征,引导径流远离任何密封的屋顶穿孔并用可流动的密封剂填充空腔(530)。
    • 3. 发明申请
    • ENERGY GENERATION INTERCONNECTION
    • 能源生成互连
    • WO2017030749A1
    • 2017-02-23
    • PCT/US2016/043921
    • 2016-07-25
    • SOLARCITY CORPORATION
    • NARLA, SandeepMAYER, AlexALTEN, Brett
    • H02S50/00
    • H02S50/00
    • Methods and apparatus for controlling an interconnection device may be provided. Sockets of the interconnection device may be configured to electrically couple to respective energy-generation modules. In some examples, the interconnection device may include a connector, memory, and a processor configured to execute instructions for managing the electrical configuration of the sockets. Methods and apparatus for controlling an energy-generation device may also be provided. Sockets of the device may be configured to electrically couple to respective energy-generation modules. In some examples, the device may include a connector, memory, and a processor configured to execute instructions for managing the electrical configuration of the sockets.
    • 可以提供用于控制互连装置的方法和装置。 互连装置的插座可以被配置为电耦合到相应的能量发生模块。 在一些示例中,互连设备可以包括连接器,存储器和被配置为执行用于管理插座的电气配置的指令的处理器。 还可以提供用于控制能量产生装置的方法和装置。 设备的插座可以被配置为电耦合到相应的能量发生模块。 在一些示例中,设备可以包括连接器,存储器和被配置为执行用于管理插座的电气配置的指令的处理器。
    • 6. 发明申请
    • SYSTEMS AND METHODS FOR CASCADING PHOTOVOLTAIC STRUCTURES
    • 用于绘制光伏结构的系统和方法
    • WO2016090293A1
    • 2016-06-09
    • PCT/US2015/064072
    • 2015-12-04
    • SOLARCITY CORPORATION
    • GONZALEZ, PabloYANG, Bobby
    • H01L31/05H01L31/18
    • H01L31/188H01L31/0201H01L31/0504Y02E10/50
    • A string-forming system is described. The string-forming system may include at least a first cell-lifting mechanism and a second cell-lifting mechanism that can automatically arrange a set of strips of a photovoltaic structure into a cascaded formation. During operation, a controller can cause the first cell-lifting mechanism to lift a first strip from a first platform, and can cause the second cell-lifting mechanism to lift, from the first platform, a second strip that may follow the first strip on the first platform. The controller may then activate a first shifting actuator of the first cell-lifting mechanism or a second shifting actuator of the second cell-lifting mechanism to place a leading edge of the second strip above a trailing edge of the first strip.
    • 描述了弦形成系统。 弦线形成系统可以包括至少第一电池提升机构和第二电池提升机构,其可以将一组光伏结构的条带自动地布置成级联地层。 在操作期间,控制器可以使第一电池提升机构从第一平台抬起第一条带,并且可以使第二电池提升机构从第一平台升起第二条带,其可以跟随第一条带 第一个平台。 然后,控制器可以激活第一电池提升机构的第一移动致动器或第二电池提升机构的第二移动致动器,以将第二条带的前缘放置在第一条带的后缘上方。
    • 7. 发明申请
    • POWER MANAGEMENT MESSAGE BUS SYSTEM
    • 电源管理信息总线系统
    • WO2016069942A1
    • 2016-05-06
    • PCT/US2015/058146
    • 2015-10-29
    • SOLARCITY CORPORATION
    • CARLSON, Eric DanielVARADARAJAN, KarthikeyanAGUINALDO, Franklin
    • H02J13/00H04Q9/00H02J3/38
    • G06Q50/06G06F13/161H02J3/383H02J13/0079H04B3/54H04Q9/00H04Q2209/30H04Q2209/60Y02D10/14Y02E10/563Y02E40/72Y02E60/7892Y04S10/123Y04S40/146
    • A message bus is utilized for energy management/control. The publish/subscribe message bus present between site gateways, a central server farm, and other entities, facilitates exchange of messages pertaining to management and control of power generation and/or storage. On-site publishers/subscribers can include, e.g., PV inverters, battery devices, energy meters, etc. Non-site specific publishers/subscribers can include, e.g., web clients, database servers (for logging), and various server components of the message bus. Messages exchanged between publishers and subscribers can include control messages (e.g., begin charging battery X) and measurement messages (e.g., the current charge of battery X is Y). Embodiments may implement logic at a site gateway prioritizing transmission of messages to local site devices. Thus where a gateway cannot simultaneously transmit device control messages and device data acquisition messages (e.g., due to processing burden or congestion), site gateway logic can prioritize transmission of the control messages over the locally-generated data acquisition requests.
    • 消息总线用于能量管理/控制。 存在于站点网关,中央服务器场和其他实体之间的发布/订阅消息总线有助于交换关于发电和/或存储的管理和控制的消息。 现场发布商/订户可以包括例如光伏逆变器,电池设备,能量计等。非特定的发布者/订户可以包括例如web客户端,数据库服务器(用于记录)和各种服务器组件 消息总线。 在发布者和订户之间交换的消息可以包括控制消息(例如,开始为电池充电X)和测量消息(例如,电池X的当前电量为Y)。 实施例可以在站点网关实现逻辑,优先地将消息传输到本地站点设备。 因此,如果网关不能同时发送设备控制消息和设备数据获取消息(例如,由于处理负担或拥塞),则站点网关逻辑可以通过本地生成的数据获取请求对控制消息的传输进行优先级排序。
    • 8. 发明申请
    • ENERGY GENERATION AND STORAGE SYSTEM WITH ELECTRIC VEHICLE CHARGING CAPABILITY
    • 具有电动车辆充电能力的能源生成和存储系统
    • WO2018026495A1
    • 2018-02-08
    • PCT/US2017/042044
    • 2017-07-14
    • SOLARCITY CORPORATION
    • NARLA, Sandeep
    • H02J3/38B60L11/18H02M7/48H02J7/35
    • An inverter includes a battery pack connection for supplying energy to or receiving energy from a photovoltaic string, a battery pack, an AC grid connection for supplying power to or receiving power from an AC grid, a connection for supplying power to a home back-up load, an electric vehicle connection for supplying to and receiving power from an electric vehicle (EV) battery, and a control input configured to receive one or more control signals for controlling the flow of power within the inverter. The inverter, under the control of the one or more control signals, converts power received from one of different power sources and provides the converted power to charge a battery of the EV.
    • 逆变器包括用于向太阳能电池串提供能量或从太阳能电池串接收能量的电池组连接,电池组,用于向交流电网供电或从交流电网接收电力的交流电网连接, 向家用备用负载供电,用于向电动车辆(EV)电池供应电力和从电动车辆(EV)电池接收电力的电动车辆连接以及控制输入,所述控制输入被配置为接收用于控制逆变器内的电力流动的一个或多个控制信号 。 逆变器在一个或多个控制信号的控制下将从不同电源中的一个接收的电力进行转换,并且提供转换的电力以对EV的电池进行充电。