虚拟同步发电机转动惯量和阻尼系数的自适应控制策略

Fuhong Cui, Baoge Zhang
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引用次数: 0

摘要

随着分布式能源在电网中的渗透率越来越高。然而,微电网中的电力电子变流器由于缺乏必要的惯性和阻尼,严重损害了电力系统的稳定性。为了解决这一问题,采用虚拟同步机(VSG)控制来模拟同步发电机(SG)的惯性和阻尼,但是,恒定的惯性矩和阻尼系数不能保证功率和频率的调节性能,也不能使系统在发生扰动时频率和功率响应稳定和快速。为此,本文提出了一种VSG旋转惯量和阻尼系数自适应控制策略,以提高电力系统的快速性和稳定性。首先介绍了VSG的工作原理,其次,在VSG控制的基础上,提出了一种惯性和阻尼系数协同自适应控制策略,并对相应参数变化下的稳定性进行了分析;最后,通过MATLAB/Simulink仿真比较了VSG在固定控制和自适应控制下的仿真结果,验证了所提控制策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive Control Strategy for Moment of Inertia and Damping Coefficient of Virtual Synchronous Generator
As the penetration of the distributed energy source in the grid is becoming higher and higher. However, power electronic converters in micro-grid seriously harm the stability of power system, due to the lack of necessary inertia and damping. To deal with the problem, Virtual synchronous machine (VSG) control is applied to simulate the inertia and damping of synchronous generator (SG), However, constant moment of inertia and damping coefficient cannot ensure the power and frequency regulation performance, and cannot make the system frequency and power response stability and rapid when the disturbance occurs. Therefore, the paper proposes a VSG rotational inertia and damping coefficient adaptive control strategy to improve the rapidity and stability of the power system. Firstly, the working principle of VSG is introduced, Secondly, Based on VSG control, a cooperative adaptive control strategy of inertia and damping coefficient is proposed, The stability analysis under the change of corresponding parameters is given; Finally, the simulation results of VSG under fixed and adaptive control are compared by MATLAB/Simulink simulation, Testify the effectiveness of the proposed control strategy.
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