Dynamic passive compensation system and controlling method thereof

A compensation system and control method technology, applied in reactive power compensation, reactive power adjustment/elimination/compensation and other directions, can solve the problem of slow response speed of the device, difficulties in DSTATCOM design and engineering implementation, inability to perform continuous stepless reactive power compensation, etc. problem, to achieve the effect of rapid and continuous compensation of reactive power

Inactive Publication Date: 2009-04-29
HUNAN UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0003] 1. Although the static var compensator DSTATCOM can perform fast and continuous reactive power compensation, due to the limitation of the manufacturing process and engineering cost of power electronic devices, a single DSTATCOM with a large capacity often has diff

Method used

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  • Dynamic passive compensation system and controlling method thereof
  • Dynamic passive compensation system and controlling method thereof
  • Dynamic passive compensation system and controlling method thereof

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Embodiment Construction

[0048] see figure 1 and figure 2 The dynamic var compensation system described in this embodiment is composed of a static var compensator DSTATCOM and multiple sets of thyristor switching capacitors TSC connected in parallel to the low-voltage bus of the distribution network. The static var compensator DSTATCOM provides continuous stepless inductive reactive power and capacitive reactive power, and can suppress the grid voltage drop and voltage fluctuation. It is a continuous subsystem of the dynamic reactive power compensation system; multiple groups of thyristor switching capacitors TSC can provide The graded capacitive reactive power has low cost and is a discrete subsystem of the dynamic reactive power compensation system. DSP controller is used to detect power grid information, judge the compensation capacity allocation between TSC capacitor bank and static var compensator DSTATCOM, and after calculation, send the switching group number signal of TSC capacitor bank and ...

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Abstract

The invention discloses a dynamic reactive power compensation system and a control method thereof. The system comprises a static reactive power compensator (DSTATCOM) used for continuing a sub-system, and a thyristor switching capacitor (TSC) used for scattering the sub-system, and a controller, wherein, the static reactive power compensator consists of a three-phase voltage type inverter and an inductor, and is connected with a plurality of thyristor switching capacitors in parallel on an electric network; wherein, the controller comprises an artificial neural net controller which is in reactive power intelligent control grade and is accessed into the DSTATCOM and a capacitor circulated controller which is in decision processing grade and is accessed into the TSC for circulated switching control of the capacitors. The invention realizes high capacity reactive power quick and continuous compensation with low cost, high efficiency and energy conservation; the control method based on the artificial neural net provided by the invention can deal with various uncertain factors of a complicated power system during operation process so as to improve the anti-interference capability of the system, not only has better dynamic compensation characteristic, but also improves the robustness and control precision of the system.

Description

technical field [0001] The invention relates to a dynamic reactive power compensation system and a control method thereof. Background technique [0002] There are many equipments with frequent and severe reactive power changes in the users of today's power grid, such as rolling mills, electric arc furnaces, electrified railways, etc., which often make the power factor of the power supply bus low and cause voltage flicker. This not only increases the line loss of the distribution network, but also causes great harm to some precision equipment that has high requirements on the quality of the power supply voltage. In order to solve this problem, there is a higher requirement for the reactive power compensation device installed at the public power supply point: it can provide fast and continuously adjustable large-capacity reactive power. However, some existing reactive power compensation devices for distribution networks have the following deficiencies: [0003] 1. Although t...

Claims

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Application Information

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IPC IPC(8): H02J3/18
CPCY02E40/30
Inventor 罗安帅智康程莹吕志鹏马伏军杨翠翠曾灿林
Owner HUNAN UNIV
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