新型电力系统中新能源分布式最优控制策略

Yilin Jia, Qiao Zheng, Zhiming Pan, Yibo Wang, Runduo Tian
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引用次数: 0

摘要

新型电力系统在向电气化、清洁化方向发展的同时,存在着许多不稳定因素。为了减轻外部励磁随机因素对新型电力系统稳定性的影响,虚拟同步发电机(VSG)可以模拟同步发电机的运行机理,为系统提供惯性和阻尼支撑。在孤岛模式下,为了提高微网容量和可靠性,通常采用多台分布式发电并联运行方式,但并联系统容易出现无功功率无法准确分配的问题。提出了一种基于共识二次控制策略的并联VSG分布式控制方法,改善了系统有功功率和无功功率的分布特性。在微网逆变器的无功控制回路中引入集成环节。相邻的多智能体之间只需进行少量的信息交互,即可减小共耦合点的电压波动,实现无功按需分配。仿真模型验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Optimal Control Strategy of New Energy in Novel Power Systems
While novel power systems are developing in the direction of electrification and cleaning, there are many unstable factors in system. To alleviate the influence of random factors of external excitation on the stability of novel power systems, virtual synchronous generator (VSG) can simulate the operation mechanism of synchronous generator and provide inertia and damping support for the system. In island mode, the parallel operation mode of multiple distributed generation is usually adopted to improve the capacity and reliability of microgrid, but the parallel system is prone to the problem that reactive power cannot be accurately distributed. The paper proposes a parallel VSG distributed control method based on consensus secondary control strategy, which can improve the distribution characteristics of active power and reactive power of the system. Integration link is introduced into the reactive power control loop of the microgrid inverter. The adjacent VSGs can reduce the voltage fluctuation at the point of common coupling and realize the on-demand distribution of reactive power by only a small amount of information interaction among multiple agents. The simulation model verifies the effectiveness of the proposed method.
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