中国电力 ›› 2025, Vol. 58 ›› Issue (9): 164-174.DOI: 10.11930/j.issn.1004-9649.202502011
满林坤1(
), 吴珂鸣1, 迟成1, 尤金石2, 赵梓潼3, 张亚健4(
)
收稿日期:2025-02-10
发布日期:2025-09-26
出版日期:2025-09-28
作者简介:基金资助:
MAN Linkun1(
), WU Keming1, CHI Cheng1, YOU Jinshi2, ZHAO Zitong3, ZHANG Yajian4(
)
Received:2025-02-10
Online:2025-09-26
Published:2025-09-28
Supported by:摘要:
利用储能参与互联电网负荷频率控制(load frequency control,LFC)可有效提升电网的频率韧性。然而,受到荷电状态、突发物理故障等因素影响,储能随机接入或退出可能造成LFC系统结构的不确定变化,不利于控制策略的设计。为此,提出基于异步切换的自适应LFC策略。首先,预设了一系列储能参与LFC的场景,针对每个场景,通过构造Lyapunov泛函确定控制参数设计约束。其次,针对储能随机接入/退出行为,基于平均驻留时间技术推导控制参数在任意2个场景间切换时的更新准则。最后,以最小化任意2个运行场景间的平均驻留时间为目标,设计基于和声搜索的LFC参数优化方法,有效提升电网对储能随机接入/退出行为的容忍度。仿真结果表明,与不考虑储能接入/退出的方案相比,所提方法有效降低了储能接入/退出行为对LFC系统动态行为的冲击影响。
中图分类号:
满林坤, 吴珂鸣, 迟成, 尤金石, 赵梓潼, 张亚健. 计及储能随机接入退出行为的互联电网自适应负荷频率控制策略[J]. 中国电力, 2025, 58(9): 164-174.
MAN Linkun, WU Keming, CHI Cheng, YOU Jinshi, ZHAO Zitong, ZHANG Yajian. Adaptive Load Frequency Control Strategy for Interconnected Power Systems Considering Stochastic Access/Exit Behaviors of Energy Storage Systems[J]. Electric Power, 2025, 58(9): 164-174.
| 方案 | ACE | ΔPtie | Δf | |||||||||
| 振幅 (p.u.) | IAE/ ((p.u.)·s) | 振幅 (p.u.) | IAE/ ((p.u.)·s) | 振幅/ Hz | IAE/ (Hz·s) | |||||||
| 本文 | 4.95×10–4 | 3.83×10–4 | ||||||||||
| 1 | 5.46×10–4 | 4.16×10–4 | ||||||||||
| 2 | 5.61×10–4 | 4.10×10–4 | ||||||||||
| 3 | 6.01×10–4 | 3.87×10–4 | ||||||||||
表 1 阶跃扰动下控制性能
Table 1 Control performance under step power fluctuations
| 方案 | ACE | ΔPtie | Δf | |||||||||
| 振幅 (p.u.) | IAE/ ((p.u.)·s) | 振幅 (p.u.) | IAE/ ((p.u.)·s) | 振幅/ Hz | IAE/ (Hz·s) | |||||||
| 本文 | 4.95×10–4 | 3.83×10–4 | ||||||||||
| 1 | 5.46×10–4 | 4.16×10–4 | ||||||||||
| 2 | 5.61×10–4 | 4.10×10–4 | ||||||||||
| 3 | 6.01×10–4 | 3.87×10–4 | ||||||||||
| 方案 | ACE绝对值误 差积分/((p.u.)·s) | ΔPtie绝对值误差 积分/((p.u.)·s) | Δf绝对值误差 积分/(Hz·s) | |||
| 本文 | ||||||
| 1 | ||||||
| 2 | ||||||
| 3 |
表 2 随机扰动下控制性能
Table 2 Control performance under stochastic fluctuations
| 方案 | ACE绝对值误 差积分/((p.u.)·s) | ΔPtie绝对值误差 积分/((p.u.)·s) | Δf绝对值误差 积分/(Hz·s) | |||
| 本文 | ||||||
| 1 | ||||||
| 2 | ||||||
| 3 |
| 场景 | ACE | ΔPtie | Δf | |||||||||
| 振幅 (p.u.) | IAE/ ((p.u.)·s) | 振幅 (p.u.) | IAE/ ((p.u.)·s) | 振幅/ Hz | IAE/ (Hz·s) | |||||||
| 1 | 4.946×10–4 | 3.826×10–4 | ||||||||||
| 2 | 5.458×10–4 | 4.163×10–4 | ||||||||||
表 3 储能是否参与时控制性能
Table 3 Control performance with/without participation of ESS
| 场景 | ACE | ΔPtie | Δf | |||||||||
| 振幅 (p.u.) | IAE/ ((p.u.)·s) | 振幅 (p.u.) | IAE/ ((p.u.)·s) | 振幅/ Hz | IAE/ (Hz·s) | |||||||
| 1 | 4.946×10–4 | 3.826×10–4 | ||||||||||
| 2 | 5.458×10–4 | 4.163×10–4 | ||||||||||
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