College of Electrical Engineering, Xinjiang University, Urumqi, 830047, CO, People's Republic of China.
CGN New Energy Investment (Shenzhen) Co., Ltd., Xinjiang Branch, Xinjiang, 830011, China.
Sci Rep. 2023 Feb 11;13(1):2476. doi: 10.1038/s41598-023-29278-5.
The doubly-fed induction generator (DFIG) with virtual inertia control and reactive damping control gives a renewable energy generation system inertia and damping characteristics similar to those of a thermal power plant, and the parameters of the control strategy have a direct impact on the small-signal stability of the system. This paper firstly introduces the operating characteristics and control strategies of DFIG-based damping control and virtual inertia control, establishes a small-signal model of the control-based DFIG integrated interconnected system, and investigates the effects of virtual inertia and reactive damping values on the small-signal stability of the system; then, the maximum damping ratio of the interval oscillation mode in small disturbance analysis is taken as the optimization objective, and the control parameters are the optimization variables. An optimization method of inertia and damping parameters is established for improving the small disturbance stability of the system. The results show that the optimization procedure could improve the damping ratio of the interval oscillation mode while ensuring the system frequency. The effects of virtual inertia and reactive damping values on the small signal stability of the system are investigated, and an optimal allocation model and method for virtual inertia used to improve the small disturbance stability of the system is proposed.
双馈感应发电机(DFIG)具有虚拟惯性控制和无功阻尼控制,可为可再生能源发电系统提供类似于火力发电厂的惯性和阻尼特性,并且控制策略的参数对系统的小信号稳定性有直接影响。本文首先介绍了基于 DFIG 的阻尼控制和虚拟惯性控制的运行特性和控制策略,建立了基于控制的 DFIG 集成互联系统的小信号模型,并研究了虚拟惯性和无功阻尼值对系统小信号稳定性的影响;然后,以小干扰分析中区间振荡模式的最大阻尼比为优化目标,以控制参数为优化变量,建立了用于提高系统小干扰稳定性的惯性和阻尼参数优化方法。结果表明,优化过程可以在保证系统频率的同时提高区间振荡模式的阻尼比。研究了虚拟惯性和无功阻尼值对系统小信号稳定性的影响,提出了一种用于提高系统小干扰稳定性的虚拟惯性优化配置模型和方法。