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An off-grid phase splitter and inverter system

A phase splitter and off-grid technology, which is applied in the field of off-grid phase splitters and inverter systems, can solve problems such as safety hazards of safety relays, surge current blowouts, and large inverter systems, and achieve power supply required effect

Active Publication Date: 2020-12-22
HUAWEI DIGITAL POWER TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] The embodiment of this application provides an off-grid phase splitter and an inverter system. Through the off-grid phase splitter provided by this application, the power supply requirements for different load systems are realized; at the same time, the transformer of the inverter system is replaced The off-grid phase splitter provided for this application can solve the problem of excessive volume of the inverter system due to the existence of the transformer and the safety hazards of burning the insurance or sticking the relay due to the surge current

Method used

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  • An off-grid phase splitter and inverter system
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  • An off-grid phase splitter and inverter system

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Embodiment Construction

[0026] The technical solutions in the embodiments of the present application will be described below with reference to the drawings in the embodiments of the present application.

[0027] figure 2 It is a schematic structural diagram of an off-grid phase splitter provided in the embodiment of this application. Such as figure 2 As shown, the off-grid phase splitter includes two input ports and three output ports. The two input ports include an input port K1 and an input port K2, the input port K1 and the input port K2 are respectively connected to the first phase port and the second phase port of the power supply, and the power supply provides the first voltage through the input port K1 and the input port K2; The output ports include an output port L1, an output port N and an output port L2. The output port L1 and the output port N provide the second voltage for the first load, and the output port N and the output port L2 provide the third voltage for the second load. Wher...

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Abstract

The present application provides an off-grid phase splitter and inverter system. In one embodiment, the off-grid phase splitter includes: a first input port and a second input port, respectively connected to the first phase port and the second input port of the power supply The second phase port is connected; the first output port and the second output port provide the second voltage for the first load, and the second output port and the third output port provide the third voltage for the second load; the first capacitor and the second capacitor, The first capacitor is connected between the first output port and the second output port, and the second capacitor is connected between the second output port and the third output port; the first switch circuit and the second switch circuit, the first switch circuit and the second output port Two switch circuits are connected in series between the first input port and the second input port, and the first switch circuit and the second switch circuit conduct unidirectionally in opposite directions to each other; a first switch circuit is arranged between the first switch circuit and the second switch circuit A node; an inductor connected between the first node and the second output port.

Description

technical field [0001] The invention relates to the technical field of inverters, in particular to an off-grid phase splitter and an inverter system. Background technique [0002] Inverters are power systems that convert DC power into AC power, and are widely used in new energy power generation industries such as photovoltaics. As the core equipment for power generation, the inverter inverts the optimized DC of photovoltaic modules into AC, and then chooses to transmit power to the grid (grid-connected) or load power supply (off-grid). like figure 1 An inverter system in the prior art shown generally has three power ports: a DC input port, a battery port and an AC output port, corresponding to three main operating modes, namely: inverter of solar DC power inputted by DC When the utility power fails, the DC power at the battery port is converted into AC power, which is output from the AC output port to supply power to the load; the DC input solar DC power is converted to ch...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02M7/217H02J3/38
CPCH02M7/217H02J3/38H02M1/009H02J3/388H02M5/08H02M5/2932H02M1/0003H02M7/48H02J2300/24Y02E10/56H02M7/537H02J9/062H03H7/21H02M7/42H02M7/44H01P5/12
Inventor 封宁波裔杰汪航王庆雨
Owner HUAWEI DIGITAL POWER TECH CO LTD
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