Power fluctuation and malfunction control system and method of direct-current-transmission double-fed wind turbine set

A wind turbine, fault control technology, applied to AC network circuits, reducing/preventing power oscillation, wind power generation, etc., can solve problems that threaten the safe operation of the system, stator flux contains DC components, and DC bus voltage rises

Active Publication Date: 2017-12-15
QUFU NORMAL UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Traditional doubly-fed wind turbines use small-capacity back-to-back converters connected to the generator rotor, while the generator stator is directly connected to the grid. Therefore, when the grid voltage drops and fails, the flux linkage of the generator stator will be broken. Oscillation, so that the stator flux linkage contains DC components, and there will be negative sequence components for asymmetric grid voltage drops
The doubly-fed generator has a higher speed, so the DC component and negative sequence component in the stator flux will have a higher slip rate, which will cause overcurrent or overvoltage in the rotor circuit of the generator.
[0003] At present, the low-voltage ride-through of the traditional doubly-fed wind turbine usually adopts the crowbar protection circuit (crowbar circuit). The principle is to use the resistance to consume the excess energy on the rotor side. The disadvantage is that once the crowbar circuit is put into operation, the rotor winding of the generator will be short-circuited, so that the doubly-fed generator becomes a squirrel-cage asynchronous generator, and a large amount of reactive power needs to be absorbed from the grid for excitation, which will be detrimental to the grid The grid voltage recovers quickly after the fault, and the resistance not only wastes energy, but also raises the temperature inside the cabinet, threatening the safety of the power devices of the converter
In addition, the input and cut-off time of the crowbar circuit is very imp...

Method used

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  • Power fluctuation and malfunction control system and method of direct-current-transmission double-fed wind turbine set
  • Power fluctuation and malfunction control system and method of direct-current-transmission double-fed wind turbine set
  • Power fluctuation and malfunction control system and method of direct-current-transmission double-fed wind turbine set

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Embodiment Construction

[0068] The present invention will be described in further detail below in conjunction with the accompanying drawings.

[0069] Such as figure 1 As shown, the DC transmission double-fed wind turbine power fluctuation and fault control system of the present invention includes: a double-fed wind turbine, an energy storage system, a first contactor 11, and a second contactor 12; the double-fed wind turbine It includes a wind turbine, a gearbox, a doubly-fed generator, a stator-side converter 1, a rotor-side converter 2, and a grid-side DC converter 3; the energy storage system includes a first energy storage device 5, a second The energy storage device 7, the first power converter 4, the second power converter 14, the third power converter 6 and the energy storage control system 8; the energy storage control system 8 includes a data acquisition module, a wind power prediction module, and a grid dispatching output command module, and output control signals to the first power conve...

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Abstract

The invention relates to a power fluctuation and malfunction control system and method of a direct-current-transmission double-fed wind turbine set, and belongs to the field of wind power. The system includes a double-fed power generator, a stator-side converter, a rotor-side converter, a net-side direct-current converter and an energy storage system. According to the method, firstly, the energy storage system supplies power to the rotator-side converter to achieve inverse conversion; secondly, after a draught fan is enabled, the stator-side converter conducts rectification boosting, the net-side direct-current converter conducts constant power control and controls the energy storage system to charge and discharge electricity to achieve power fluctuation suppression; if voltage drop occurs to a power network, the net-side direct-current converter conducts constant direct voltage control, and the rotator-side converter and the energy storage system run in a voltage drop malfunction control mode; if overvoltage occurs to the power network, the energy storage system conducts voltage clamp on the power network; if the network is disconnected, the net-side direct-current converter conducts constant direct voltage control, the rotator-side converter makes the output power of the power generator turn to zero; and finally, the net-side direct-current converter is switched off. The power fluctuation and malfunction control system and method of the direct-current-transmission double-fed wind turbine set are conducive to usage of the double-fed wind turbine set in a flexible direct current transmission system.

Description

technical field [0001] The invention relates to a control system and a control method, in particular to a power fluctuation and fault control system and method of a DC transmission doubly-fed wind turbine, belonging to the technical field of wind power generation. Background technique [0002] Doubly-fed wind turbines are one of the most widely used mainstream products in the wind power market. Traditional doubly-fed wind turbines use small-capacity back-to-back converters connected to the generator rotor, while the generator stator is directly connected to the grid. Therefore, when the grid voltage drops and fails, the flux linkage of the generator stator will be broken. Oscillation, so that the stator flux linkage contains DC components, and there will be negative sequence components for asymmetric grid voltage drops. The doubly-fed generator has a higher speed, so the DC component and negative sequence component in the stator flux linkage will have a higher slip rate, wh...

Claims

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Application Information

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IPC IPC(8): H02J3/24H02J3/38H02J3/32
CPCH02J3/24H02J3/32H02J3/386Y02E10/76Y02E70/30
Inventor 蔡彬闫绍敏褚晓广陈志远肖群孔英
Owner QUFU NORMAL UNIV
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