Parameter adaptive strategy for virtual synchronous generator control

被引:0
|
作者
Ren H.-P. [1 ]
Chen Q. [1 ]
Zhang L.-L. [1 ]
Li J. [1 ]
机构
[1] Shaanxi Key Laboratory of Complex System Control and Intelligent Information Processing, Xi'an University of Technology, Xi'an
关键词
Adaptive control; Power grid; System damping; Transient stability; Virtual synchronous generator;
D O I
10.7641/CTA.2020.90123
中图分类号
学科分类号
摘要
The virtual synchronous generator technology analogs the characteristics of the synchronous generator via the controller design. It improved the stability of the grid systems which include the new energy. At the same time, according to the adjustable characteristics of the virtual synchronous generator parameters, the parameter adaptive adjustment is used to improve the dynamic performance of the system. However, the traditional virtual synchronous generator adaptive control technology still has two drawbacks: on the one hand, the large-scale adjustment of the damping droop coefficient and the virtual moment of inertia requires the system having a high energy storage margin; On the other hand, there is a power overshoot phenomenon in the transient regulation process, which is disadvantageous to the power equipment. First, this paper provides a convenient adjustment method for improving the transient stability of the system, the system damping is adjusted by introducing the output speed feedback. Second, according to the transient power-angle characteristics of the system, a parameter adaptive control strategy is proposed, which shortens the transient adjustment time and ensures that the deviation of the system frequency in the transient adjustment process is within the allowable range, and improves the transient performance of the grid frequency adjustment, at the same time, the power overshoot is suppressed. Finally, the experimental results show that the proposed control strategy is superior to the existing adaptive control strategy. © 2020, Editorial Department of Control Theory & Applications South China University of Technology. All right reserved.
引用
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页码:2571 / 2580
页数:9
相关论文
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