Single tripolar synchronous switch-based intelligent reactive power compensation device

A technology of synchronous switch and compensation device, applied in reactive power compensation, reactive power adjustment/elimination/compensation, etc., can solve the problems of complex driving sequence, many driving circuits, and technical difficulty, and achieve a large number of applications and structures that are convenient for engineering. The effect of simple and simplified circuit structure

Active Publication Date: 2012-07-18
北京馨容纵横科技发展有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The structure of three unipolar synchronous switches is more complicated than that of a single three-pole synchronous switch, and there are more driving circuits, and each unipolar switch requires an independent switch coil and driving circuit, and the driving sequence is complicated
Due to the difficulty of TSC technology, high energy consumption and high cost, it is only used in the low-voltage field, and there are not many applications in the medium-voltage field.

Method used

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  • Single tripolar synchronous switch-based intelligent reactive power compensation device
  • Single tripolar synchronous switch-based intelligent reactive power compensation device
  • Single tripolar synchronous switch-based intelligent reactive power compensation device

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Embodiment Construction

[0033] figure 1 Describes an intelligent reactive power compensation device based on a single three-pole synchronous switch according to the present invention. The input terminals X1, X3, and X5 of the three main contacts K1A, K1B, and K1C of the three-pole synchronous switch K1 are respectively connected to the three-phase grid The voltages U, V, and W are connected, and the output terminals X2, X4, and X6 of the three main contacts K1A, K1B, and K1C of the three-pole synchronous switch K1 are respectively connected to the capacitor bank, wherein the input terminals X1 and The pre-charging circuit 1 is connected in parallel between the output terminals X2, the pre-charging circuit 2 is connected in parallel between the input terminal X3 and the output terminal X4 of the other main contact K1B, and the grid line voltage U UV The capacitor bank is pre-charged by the pre-charging circuit 1 and the pre-charging circuit 2, and the phase control device makes the voltage on the main...

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Abstract

The invention discloses a single tripolar synchronous switch-based intelligent reactive power compensation device, which is characterized in that: the input ends of main contacts of a tripolar synchronous switch K1 are connected with three phases of power grid voltages U, V and W respectively, and the output ends of the main contacts of the tripolar synchronous switch K1 are connected with a capacitor bank respectively; a pre-charging circuit 1 is connected in parallel between the input end and output end of a main contact; a pre-charging circuit 2 is connected in parallel between the input end and output end of another main contact; the line voltage of a power grid pre-charges the capacitor group through the pre-charging circuits 1 and 2; a phase control device switches on and switches off the three main contacts of the tripolar synchronous switch K1 at the same time according to the preset phase angle of the voltage of the power grid to switch the capacitor group. Experimental waves show that the device is good in switching electrical effect, environment-friendly, energy-saving, simple in structure, economical and practical, and can be conveniently applied to engineering in a large scale.

Description

technical field [0001] The invention relates to the fields of reactive power compensation, harmonic filtering and grid power quality control of electric power systems, and in particular to an intelligent reactive power compensation device based on a single three-pole synchronous switch. Background technique [0002] The power grid needs reactive power compensation to achieve the purpose of stabilizing the grid voltage, improving the power factor, and reducing line loss. Switching capacitor bank is the main method to realize reactive power compensation. However, the technical status of switching capacitor bank is not optimistic. [0003] In the field of reactive power compensation, about 80% use mechanical contact switches to switch capacitors. The mechanical contact switches are three-pole switches. The three main contacts of the three-pole switch are closed and opened at the same time. The voltage phase angle switches the capacitor, and the current when it is switched in e...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02J3/18
CPCY02E40/30
Inventor 杨建宁
Owner 北京馨容纵横科技发展有限公司
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