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储能系统技术 储能系统 微电网 可靠性分析 ★ 5.0

面向多微网的重同步调度策略以实现增强灵活性的最优分布式系统运行

Resynchronization scheduling policy for multiple microgrids for optimal distributed system operation with enhanced flexibility

语言:

中文摘要

摘要 微网通过利用孤岛模式,在现代配电网中高效管理分布式电源,有望提高系统的可靠性与灵活性。在进入孤岛运行模式后,微网必须重新与主网同步。然而,在重同步过程中,多个微网的并网与解列可能导致功率快速上升或下降。在多个互联微网构成的系统中,孤岛模式与重同步的调度成为关键的管理因素。本文提出一种基于多微网重同步策略的电力系统最优运行模型。该策略确定每个微网的孤岛运行持续时间,并在重同步后调整与主网之间的电能交易量。为缓解微网重同步期间的灵活性不足问题,本文引入了两种重同步方法。K值轮换法为各微网分配不同的孤岛持续时间,从而实现顺序重同步;渐进式功率交换限值递增法则采用统一的孤岛持续时间,但逐步恢复功率交换,而非瞬时完成重同步。通过比较不同重同步策略下的系统运行成本,评估所提方法的有效性。

English Abstract

Abstract Microgrids are expected to enhance reliability and flexibility by utilizing islanding mode to efficiently manage distributed power sources within the modern distribution power system. After entering the islanding mode, microgrids must be resynchronized with the main grid. However, during the resynchronization process, connecting and islanding multiple microgrids can lead to rapid power ramp-up or ramp-down. In systems with multiple interconnected microgrids, the scheduling of islanding mode and resynchronization becomes a critical management factor. This paper proposes an optimal operation model for power systems, based on a resynchronization policy for multiple microgrids. The proposed policy determines the duration of the islanding mode for each microgrid and adjusts trading volumes with the main grid after resynchronization. Two resynchronization methods are introduced to mitigate flexibility shortages during microgrid resynchronization. The K-value rotation method assigns different islanding durations to microgrids, enabling sequential resynchronization. The Gradual flow limit increment method applies a uniform islanding duration but gradually restores power exchange rather than instantaneously resynchronizing. The effectiveness of the proposed methods is evaluated by comparing operating costs under different resynchronization policies.
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SunView 深度解读

该多微网再同步调度技术对阳光电源ST系列储能变流器及PowerTitan系统具有重要应用价值。论文提出的K值轮换法和渐进功率恢复法可直接应用于我司GFM/GFL控制策略优化,解决多微网并离网切换时的功率爬坡冲击问题。建议将该调度算法集成至iSolarCloud平台,实现多站点储能系统协调控制,提升电网柔性调节能力。特别是在工商业微网集群场景,可结合VSG技术优化再同步时序,降低系统运行成本,增强产品市场竞争力。