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A control system and method for a bipolar high-voltage pulse power supply

A high-voltage pulse power supply and control method technology, applied in multiple input and output pulse circuits, etc., can solve the problems of difficulty in obtaining nanosecond pulse discharge discharge characteristics and laws, poor matching of load characteristics, and inability to control non-correlated pulses. Achieve the effect of promoting the mechanism and application research of atmospheric pressure pulsed plasma discharge

Active Publication Date: 2020-11-10
XI AN JIAOTONG UNIV +1
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  • Description
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AI Technical Summary

Problems solved by technology

[0003] The existing nanosecond pulse sources at home and abroad are mainly adjustable in nanosecond pulse frequency and amplitude, which cannot make all parameters such as pulse rise / fall time, frequency, amplitude, duty cycle, pulse number, and waveform shape irrelevant and adjustable. Control, poor matching of load characteristics, making it difficult to control the discharge results, it is difficult to obtain the systematic discharge characteristics and laws of nanosecond pulse discharge, and it is difficult to form a consensus on the explanation of the nanosecond pulse discharge mechanism
For example, in the field of energy and chemical industry, it is difficult to match the pulse source and load. In the field of aerospace, it is impossible to obtain continuous flow and surge control. In the field of biomedicine, it is impossible to accurately control the dose of active particles generated by discharge.

Method used

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  • A control system and method for a bipolar high-voltage pulse power supply
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  • A control system and method for a bipolar high-voltage pulse power supply

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Embodiment Construction

[0034] Below in conjunction with accompanying drawing, the present invention is described in further detail:

[0035] see Figure 1 to Figure 3 , a control system for a bipolar high-voltage pulse power supply, including a high-voltage positive pulse generating circuit and a high-voltage negative pulse generating circuit connected in series, wherein the high-voltage positive pulse generating circuit is composed of a series of high-voltage positive pulse modules, and the high-voltage negative pulse generating circuit It consists of a series of high-voltage negative pulse modules. The high-voltage positive pulse module includes a positive pulse control module, a positive pulse switch module and a positive pulse energy storage module. The positive pulse control module controls the conduction or Turn off to determine the charge or discharge of the positive pulse energy storage module; the high-voltage negative pulse module includes a negative pulse control module, a negative pulse ...

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Abstract

The invention discloses a control system and method of a bipolar high voltage pulse power supply. A switching sequence in a solid switch group module through control modules in a high voltage positivepulse generating circuit and a high voltage negative pulse generating circuit to obtain the bipolar high voltage pulse power supply in which a positive / negative pulse rising time, a positive / negative pulse falling time, a time interval between positive and negative pulses within one period, a positive / negative pulse voltage, a positive / negative pulse width, pulse frequency and a pulse number can be flexibly adjusted. The parameter-adjustable bipolar pulse realized by the control system and method disclosed by the invention has very important significance for studying the mechanism and the application of nanosecond pulse discharge.

Description

technical field [0001] The invention belongs to the field of bipolar pulse regulation, and in particular relates to a control system and method for a bipolar high-voltage pulse power supply. Background technique [0002] Gas discharge driven by high-voltage pulse power supply has important and broad application prospects in the fields of material science, energy and environment, biomedicine, military and space science. In a simulation study of an atmospheric pressure pulsed dielectric barrier discharge it was found that [1] , in the bipolar pulse discharge process, the positive half-cycle discharge is basically the same as the unipolar positive pulse, and the second discharge on the falling edge is slightly lower than the first discharge; the negative half-cycle discharge is different from the unipolar negative pulse, and can Occurs in a lower electric field, because there is an interaction between the positive pulse discharge and the negative pulse discharge, the positive ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H03K5/24H03K5/26
CPCH03K5/24H03K5/26
Inventor 张小宁刘颖樊瑞李晓焕张军屠震涛向红丽
Owner XI AN JIAOTONG UNIV
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