Dynamic interconnected control system and control method for solar battery pack

A technology of solar battery packs and solar cells, which is applied in generators/motors, measuring electricity, photovoltaic power generation, etc., can solve problems such as damage to single battery cells, low power generation efficiency, and reduced output current of solar battery packs, and achieve a simple circuit structure Effect

Inactive Publication Date: 2010-04-21
HEBEI INST OF LASER
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Problems solved by technology

[0004] In view of the defects and deficiencies in the prior art, the purpose of the present invention is to propose a solar cell group dynamic interconnection control system and control method, which can solve the problems caused by the simple series and parallel structure of the solar cell group in the prior art. When the unit is damaged or shaded, the output current of the entire solar cell array is reduced, resulting in low power generation efficiency

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  • Dynamic interconnected control system and control method for solar battery pack
  • Dynamic interconnected control system and control method for solar battery pack
  • Dynamic interconnected control system and control method for solar battery pack

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Embodiment Construction

[0024] The present invention will be further described below in conjunction with the accompanying drawings.

[0025] The first preferred embodiment of the present invention is figure 1 As shown, it includes a terminal array 1 , a MOS switch 2 and a control unit 3 . Such as figure 1 As shown, the connecting terminal array is externally connected with solar battery unit 1, solar battery unit 2...solar battery unit N, the solar battery units are connected in series, and each solar battery unit is connected in parallel with a MOS switch, and each A MOS switch is electrically connected to the control unit, and the initial state of the MOS switch is off. Wherein, the control unit has a test unit, and the test unit tests the polarity of each solar battery unit. When a solar cell fails, a polarity reversal occurs. If it is found that the polarity of the solar battery unit is reversed, the test unit can detect that the solar battery unit has failed, and then close the MOS switch co...

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Abstract

The invention provides a dynamic interconnected control system and a control method for a solar battery pack, which comprises a plurality of MOS switch units, a connection terminal array and a control unit, wherein MOS switches are connected in series to form an array; each electric node of the MOS switch array is connected with a corresponding node of the connection terminal; the MOS switches are electrically connected with a control unit; and the control unit controls switch-on/switch-off of the MOS switches according to the state of the solar battery unit connected with the connection terminal array. The method comprises the following steps of: connecting a plurality of MOS switch units in series; connecting each solar battery unit and an MOS switch in parallel and electrically connecting the solar battery unit and the control unit; using the control unit to monitor the state of each solar battery unit and controlling the switch-on/switch-off of the MOS switches according to the state of the solar battery unit. The dynamic interconnected control system and the control method for the solar battery pack provided by the invention solve the problem that the entire system is affected when a single solar battery unit fails by using a very simple circuit structure.

Description

technical field [0001] The invention relates to a dynamic interconnection control system and control method for solar cell groups. Background technique [0002] The voltage generated by a single solar cell is between 0.8-1.6v. Therefore, in order to realize the output of high voltage and high current, it is necessary to adopt multiple complex topological structures connected in series and in parallel. However, in multiple series and parallel structures, when a single cell is damaged or in a shaded state, it is equivalent to a pn junction with a very high internal resistance connected in series in the circuit, making the entire solar cell group in a mismatch state, and the internal resistance is greatly increased. The increase makes it impossible to output the rated current. At this time, although most of the battery cells are in the power generation state, due to the existence of high internal resistance cells, the output current of the entire series branch will be reduced...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02N6/00G01R31/36H02S10/00
CPCY02E10/50
Inventor 李野孙振路王书生
Owner HEBEI INST OF LASER
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