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    • 2. 发明授权
    • Smart microgrid
    • 智能微电网
    • US09240687B2
    • 2016-01-19
    • US12897664
    • 2010-10-04
    • Michael A. CarraleroJimmy M. Quiambao
    • Michael A. CarraleroJimmy M. Quiambao
    • H02J1/00H02J3/14H02J1/10H02M1/10H02J3/38H02J13/00
    • H02J3/383H02J3/06H02J3/386H02J13/0006Y02E10/563Y02E10/763Y02E40/72Y04S10/123Y10T307/352
    • Described herein are embodiments of microgrid systems which may be used as stand-alone systems or may be connected to a larger, integrated power supply system. In some embodiments, a system comprises a smart microgrid system comprising at least one electrical power bus connectable to at least one input power source by one or more switchable connections, a communication network coupled to the smart microgrid system, and a controller coupled to the communication network. In some embodiments the controller comprises logic to monitor power outputs from the at least one input power source, to monitor one or more power loads coupled to the at least one electrical power bus, and to selectively connect one or more of the input power sources to the at least one electrical power bus.
    • 这里描述的是可以用作独立系统或可以连接到较大的集成电源系统的微电网系统的实施例。 在一些实施例中,系统包括智能微电网系统,其包括通过一个或多个可切换连接可连接到至少一个输入电源的至少一个电力总线,耦合到智能微电网系统的通信网络,以及耦合到通信的控制器 网络。 在一些实施例中,控制器包括用于监测来自至少一个输入电源的功率输出的逻辑,以监测耦合到至少一个电力总线的一个或多个功率负载,以及选择性地将一个或多个输入电源连接到 所述至少一个电力总线。
    • 3. 发明授权
    • Reconfigurable microgrid direct current interface
    • 可重构微电网直流接口
    • US08648496B2
    • 2014-02-11
    • US12944433
    • 2010-11-11
    • Michael A. CarraleroJimmy M. Quiambao
    • Michael A. CarraleroJimmy M. Quiambao
    • H02J1/00
    • H02M3/1584H02J1/102H02J7/34H02J13/0003H02J2001/104Y02P80/14Y10T307/696Y10T307/707
    • Technologies are described herein for synchronizing multiple direct current (“DC”) voltages provided by multiple power sources. Multiple input voltages are received from multiple power sources. A voltage control signal indicating a desired output voltage is issued to multiple DC-DC converter modules electrically coupled to the multiple power sources. A master DC-DC converter module from the multiple DC-DC converter modules converts a master input voltage to a master output voltage that is substantially equal to the desired output voltage. The master output voltage is then provided to the remaining multiple DC-DC converter modules. Each of the remaining multiple DC-DC converter modules then converts a slave input voltage to a slave output voltage that is substantially equal to the master output voltage.
    • 这里描述了用于同步由多个电源提供的多个直流(“DC”)电压的技术。 从多个电源接收多个输入电压。 指示期望输出电压的电压控制信号被发送到电耦合到多个电源的多个DC-DC转换器模块。 来自多个DC-DC转换器模块的主DC-DC转换器模块将主输入电压转换为基本上等于期望输出电压的主输出电压。 然后将主输出电压提供给剩余的多个DC-DC转换器模块。 剩余的多个DC-DC转换器模块中的每一个然后将从输入电压转换成基本上等于主输出电压的从输出电压。
    • 7. 发明申请
    • Reconfigurable Microgrid Direct Current Interface
    • 可重构微电网直流接口
    • US20120119586A1
    • 2012-05-17
    • US12944433
    • 2010-11-11
    • Michael A. CarraleroJimmy M. Quiambao
    • Michael A. CarraleroJimmy M. Quiambao
    • H02J1/00
    • H02M3/1584H02J1/102H02J7/34H02J13/0003H02J2001/104Y02P80/14Y10T307/696Y10T307/707
    • Technologies are described herein for synchronizing multiple direct current (“DC”) voltages provided by multiple power sources. Multiple input voltages are received from multiple power sources. A voltage control signal indicating a desired output voltage is issued to multiple DC-DC converter modules electrically coupled to the multiple power sources. A master DC-DC converter module from the multiple DC-DC converter modules converts a master input voltage to a master output voltage that is substantially equal to the desired output voltage. The master output voltage is then provided to the remaining multiple DC-DC converter modules. Each of the remaining multiple DC-DC converter modules then converts a slave input voltage to a slave output voltage that is substantially equal to the master output voltage.
    • 这里描述了用于同步由多个电源提供的多个直流(“DC”)电压的技术。 从多个电源接收多个输入电压。 指示期望输出电压的电压控制信号被发送到电耦合到多个电源的多个DC-DC转换器模块。 来自多个DC-DC转换器模块的主DC-DC转换器模块将主输入电压转换为基本上等于期望输出电压的主输出电压。 然后将主输出电压提供给剩余的多个DC-DC转换器模块。 剩余的多个DC-DC转换器模块中的每一个然后将从输入电压转换成基本上等于主输出电压的从输出电压。
    • 10. 发明申请
    • SMART MICROGRID
    • US20120080942A1
    • 2012-04-05
    • US12897664
    • 2010-10-04
    • Michael A. CarraleroJimmy M. Quiambao
    • Michael A. CarraleroJimmy M. Quiambao
    • H02J4/00
    • H02J3/383H02J3/06H02J3/386H02J13/0006Y02E10/563Y02E10/763Y02E40/72Y04S10/123Y10T307/352
    • Described herein are embodiments of microgrid systems which may be used as stand-alone systems or may be connected to a larger, integrate power supply system. In some embodiments, a system comprises smart microgrid system comprising at least one electrical power bus connectable to at least one input power source by one or more switchable connections, a communication network coupled to the smart microgrid system, and a controller coupled to the communication network. In some embodiments the controller comprises logic to monitor power outputs from the at least one input power source monitor one or more power loads coupled to the at least one and selectively connect one or more of the input power sources to the at least one electrical power bus.
    • 这里描述的是可以用作独立系统或可以连接到更大的集成电源系统的微电网系统的实施例。 在一些实施例中,系统包括智能微电网系统,其包括可由一个或多个可切换连接器连接到至少一个输入电源的至少一个电力总线,耦合到智能微电网系统的通信网络,以及耦合到通信网络 。 在一些实施例中,控制器包括用于监视来自至少一个输入电源的功率输出的逻辑,该功率输出监测耦合到该至少一个的一个或多个功率负载,并且将一个或多个输入电源选择性地连接到至少一个电力总线 。