Energy router for energy internet
    2.
    发明授权
    Energy router for energy internet 有权
    能源互联网能源路由器

    公开(公告)号:US09564754B2

    公开(公告)日:2017-02-07

    申请号:US14717823

    申请日:2015-05-20

    Abstract: The present invention relates to an energy router for an energy internet, which comprises a three-phase three-level bi-directional rectifying unit, a six-phase interleaved DC/DC bi-directional conversion unit, a self-excitation soft start push-pull full-bridge DC/DC bi-directional conversion unit, a three-phase resonant soft switching bi-directional inversion unit, a single-phase full-bridge bi-directional inversion unit, a high-voltage DC bus and a low-voltage DC bus. The three-phase three-level bi-directional rectifying unit, the six-phase interleaved DC/DC bi-directional conversion unit, the self-excitation soft start push-pull full-bridge DC/DC bi-directional conversion unit, the three-phase resonant soft switching bi-directional inversion unit and the single-phase full-bridge bi-directional inversion unit each have three energy flow operating modes: a forward conduction, a reverse conduction and a non-conduction. According to the energy flow operating mode of each unit, different operating modes of the energy router for the energy internet are formed.

    Abstract translation: 本发明涉及一种用于能量互联网的能量路由器,其包括三相三电平双向整流单元,六相交错DC / DC双向转换单元,自激软启动推挽单元, 拉全桥DC / DC双向转换单元,三相谐振软开关双向反相单元,单相全桥双向反转单元,高压直流母线和低压 直流母线 三相三电平双向整流单元,六相交错DC / DC双向转换单元,自励软启动推挽全桥直流/直流双向转换单元,三相 相位共振软开关双向反转单元和单相全桥双向反相单元各具有三种能量流动工作模式:正向传导,反向传导和非导通。 根据每个单元的能量流动模式,形成能量互联网能量路由器的不同运行模式。

    Electric grid state estimation system and method based on boundary fusion

    公开(公告)号:US10935581B2

    公开(公告)日:2021-03-02

    申请号:US16120907

    申请日:2018-09-04

    Abstract: The invention provides an electric grid state estimation system and method based on a boundary fusion. The system includes an electric grid data acquisition module, a communication module including a local data unit and a state estimation unit, and a data fusion module, wherein the state estimation unit includes a memory storing a state estimation program and a display displaying a program running and outputting a state variable; the state estimation program is performed to realize an electric grid state estimation; the estimation method includes the following steps of dividing a regional electric grid, then establishing a measurement equation for each region, solving an internal quantity and a boundary quantity, fusing the boundary quantities of two regions, correcting the boundary quantity, performing a non-linear transformation on the intermediate variable, solving the estimated values of the state variable by the least square method, and performing outputting.

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