Method for improving system damping by using additional damping controller of wind turbine

A wind turbine and additional damping technology, applied in the field of power systems, can solve problems such as low-frequency oscillation of the system, weakening of system oscillation damping characteristics, and huge investment

Active Publication Date: 2014-03-12
CHINA ELECTRIC POWER RES INST +1
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Problems solved by technology

However, long-distance and large-capacity power transmission will weaken the system's oscillation damping characteristics. Disturbed by faults or wind power fluctuations, the system is prone to low-frequency oscillations, which endangers the safe and stable operation of the power grid.
By strengthening the transmission network or installing primary devices such as flexible AC transmission, although the oscillation damping of the system can be improved, it will face huge investment

Method used

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  • Method for improving system damping by using additional damping controller of wind turbine
  • Method for improving system damping by using additional damping controller of wind turbine
  • Method for improving system damping by using additional damping controller of wind turbine

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Embodiment Construction

[0057] The specific embodiments of the present invention will be further described in detail below in conjunction with the accompanying drawings.

[0058] (1) Detailed modeling of wind turbines in grid-connected wind farms

[0059] Using power system transient simulation tools, the simulation models of wind turbines and wind farms are established. in, figure 1 is the block diagram of the wind turbine additional damping controller, figure 2 It is the schematic diagram of the control system of the doubly-fed fan. The control targets of the inverter on the rotor side are the output reactive power of the motor and the optimal rotor speed corresponding to the real-time wind speed; the control targets of the inverter on the stator side are the voltage on the DC side of the inverter and the AC reactive power. . The rotor-side inverter control system of doubly-fed wind turbines such as image 3 As shown in , the output of the additional damping controller is converted to the devi...

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Abstract

The invention belongs to the field of power systems and in particular relates to a method for modulating the active power output of a wind turbine by using an additional damping controller and improving the low-frequency oscillation damping characteristic of a large-scale wind power station grid-connected system. In the invention, according to a basic principle of controlling the optimum rotary speed of a double-fed wind turbine, a low-frequency oscillation characteristic signal of an alternating current power grid after interference is introduced to design the additional damping controller, the additional damping controller outputs a modulation component for controlling the rotary speed of a fan, and adjustment of the active power output of the wind turbine is realized by controlling the rotary speed of the fan, so an effect of restraining system oscillation is achieved. By applying the method to a large-scale grid-connected wind power station, the low-frequency oscillation damping characteristic of the system after interference can be improved; the system oscillation is quickly restrained; and capability of receiving large-capacity new energy source power of a power grid is improved.

Description

technical field [0001] The invention relates to a method in the field of power systems, in particular to a method for improving the low-frequency oscillation damping characteristics of a large-scale wind farm grid-connected system by using an additional damping controller to modulate a wind turbine. Background technique [0002] The potential of wind energy utilization is huge. The total exploitable installed capacity of land and offshore wind energy reaches about 700-1.2 billion kW, and the data proposed in the latest assessment report can even reach more than 2.5 billion kW. An important component of the Chinese government's commitment to wind power development is the construction of seven "10 million-kilowatt wind power bases". The seven wind power bases are located in the east and west of Inner Mongolia, Hami of Xinjiang, Jiuquan of Gansu, Hebei, west of Jilin, and the coastal and offshore areas of Jiangsu. With the large-scale development of wind farms, the level of re...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02J3/24
Inventor 郑超雷虹云马世英宋云亭唐晓骏丁剑陈得治张志强尚慧玉张鑫
Owner CHINA ELECTRIC POWER RES INST
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