← 返回
储能系统技术 储能系统 ★ 4.0

通过详细的输电建模和机组策略选择提升不确定性和阻塞条件下的自动发电控制性能

Enhancing Automatic Generation Control Performance Under Uncertainty and Congestion Through Detailed Transmission Modeling and Strategic Selection of Units

作者 Victor H. Hinojosa · Daniel Bolbarán · Esteban Gil · Guillermo Gutierrez-Alcaraz
期刊 IEEE Transactions on Power Systems
出版日期 2024年11月
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★ 4.0 / 5.0
关键词 自动发电控制 经济调度 随机N - 1网络约束 发电单元调度 频率稳定性
语言:

中文摘要

将自动发电控制(AGC)系统视为经济调度与同步发电机动态之间的中介,本文提出一种新的AGC建模方法。该调度框架基于随机N-1有损网络约束经济调度问题,构建为混合整数线性规划模型,并采用分段线性表达式表示输电损耗。在一次调频结束后,该方法在两阶段随机优化中选择参与调节的机组并确定其调节分配因子,综合考虑负荷电压依赖性,利用线性有损移位因子建模潮流与网损,最小化启停与运行成本。所提方法允许AGC机组双向调节以经济应对低频事件,协同优化能量与备用,相较传统AGC更具灵活性与效率。在50节点系统中通过DIgSILENT PowerFactory验证了方法的有效性,并通过大量RMS仿真评估系统频率稳定性。

English Abstract

Considering the automatic generation control (AGC) system as an intermediary between the economic dispatch problem and synchronous generator dynamics, this study introduces a novel formulation for the AGC system. The proposed scheduling framework is based on a stochastic N-1 lossy network-constrained economic dispatch problem formulated as a mixed-integer linear programming instance. Transmission losses are represented through piecewise linear expressions. After the primary frequency control finishes, the proposed scheduling methodology selects the generation units that will be activated and determines their regulation participation factors to minimize the activation and operational costs in a two-stage stochastic problem, incorporating the load-voltage dependency phenomenon, and modeling transmission power flow and power losses using linear lossy shift-factors. The proposed formulation also considers the distinctive possibility of AGC units to both increase and decrease power for addressing under-frequency events economically, offering an effective generation capability that co-optimizes energy and reserves, providing a more flexible and efficient control strategy compared to traditional AGC systems. The effectiveness of the proposed methodology is demonstrated in a 50-bus electrical system, evaluating its performance with diverse operational conditions and contingency generation events using DIgSILENT PowerFactory. Extensive computational RMS experiments are conducted to assess the frequency stability in the electrical power system.
S

SunView 深度解读

该AGC优化调度技术对阳光电源ST系列储能系统和PowerTitan大型储能系统具有重要应用价值。研究提出的双向调节策略与能量-备用协同优化方法,可直接应用于储能变流器参与电网一次调频后的二次调频控制,通过随机优化算法动态调整储能系统充放电功率分配因子,在考虑输电阻塞和网损的前提下实现经济调度。该方法与阳光电源构网型GFM控制技术结合,可提升储能系统在高比例新能源场景下的频率支撑能力,优化AGC响应速度与精度。特别是其线性有损移位因子建模方式,可集成到iSolarCloud云平台的智能调度模块,为多站点储能集群提供实时优化决策,降低运行成本并增强电网稳定性支撑能力。