1. 上海电力大学电气工程学院,上海,200090
2. 国网江苏省电力公司电力科学研究院,南京,211100
纸质出版:2025
移动端阅览
高国栋, 朱丹丹, 周前, 等. 基于多智能体深度强化学习的风电集群无功电压分层优化控制策略[J]. 高电压技术, 2025,51(12):6010-6021.
高国栋, 朱丹丹, 周前, et al. 基于多智能体深度强化学习的风电集群无功电压分层优化控制策略[J]. 2025, 51(12): 6010-6021.
高国栋, 朱丹丹, 周前, 等. 基于多智能体深度强化学习的风电集群无功电压分层优化控制策略[J]. 高电压技术, 2025,51(12):6010-6021. DOI: 10.13336/j.1003-6520.hve.20241472.
高国栋, 朱丹丹, 周前, et al. 基于多智能体深度强化学习的风电集群无功电压分层优化控制策略[J]. 2025, 51(12): 6010-6021. DOI: 10.13336/j.1003-6520.hve.20241472.
随着风电并网比例的不断提高,电网电压波动频率和幅值显著提升,甚至面临越限风险。针对风电集群接入电网所导致的并网点电压和风电集群内机端电压高频幅波动及越限问题,提出一种基于多智能体深度强化学习的风电集群实时分层电压控制方法。首先,针对无功资源调节时序耦合关系,将风电集群在线无功优化问题转化为马尔可夫决策过程;然后,以电压波动范围最小和网损最小为优化控制目标,采用多智能体深度确定性策略梯度算法实现“离线集中学习、在线分散执行”下的风机精准实时控制和无功补偿装置的实时调节控制;最后,基于某区域高压配电网风电场集群开展了算例分析,研究结果表明,所提策略在提高计算速度的基础上,实现了对风电集群并网点电压和机端电压的精细化实时控制,电压调节和降损效果明显。
As the proportion of wind power integrated into the grid continues to increase
the frequency and amplitude of grid voltage fluctuations have significantly improved
and even the risk of exceeding limits arises. In response to the high-frequency and amplitude fluctuations and over-limit issues of grid-connected point voltage and the terminal voltage within the wind power cluster which are caused by the integration of wind power clusters into the grid
a real-time hierarchical voltage control method for wind power clusters based on multi-agent deep reinforcement learning is proposed. Firstly
in accordance with the timing coupling relationship of reactive power resource regulation
the online reactive power optimization problem of wind power clusters is transformed into a Markov decision process. Then
the minimum voltage fluctuation range and the minimum network loss are taken as the optimization control objectives
and the multi-agent deep deterministic policy gradient algorithm is adopted to achieve precise real-time control of wind turbines and real-time adjustment control of reactive power compensation devices under "offline centralized learning and online decentralized execution". Finally
through the case analysis of wind farm clusters in a regional high-voltage distribution network
the research results indicate that this strategy can achieve fine real-time control of the grid-connected point voltage and terminal voltage of wind power clusters based on improving the calculation speed
with significant effects on voltage regulation and loss reduction.
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