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基于暂态稳定性的弹性交直流混合微电网优化规划
Transient Stability-Driven Planning for the Optimal Sizing of Resilient AC/DC Hybrid Microgrids
| 作者 | Yi Wang · Goran Strbac |
| 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 下垂控制 微电网 多物理场耦合 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 交直流混合微电网 暂态稳定 规划框架 最优潮流算法 储能优化 |
语言:
中文摘要
本文提出一种面向弹性交直流混合微电网最优容量配置的暂态稳定性驱动规划框架,综合考虑不同类型故障下的频率与电压稳定要求及交直流互联变流器的频压耦合动态。该模型采用防御者-攻击者-防御者(DAD)结构,并通过增强型遗传算法结合稀疏计算与局部搜索进行求解。在运行层面,提出一种计及常规机组调速器、自动电压调节器及逆变型电源下垂控制动态的暂态稳定约束最优潮流(TSC-OPF)方法,并引入Lyapunov优化以处理储能设备的时间耦合特性,实现小时级决策与秒级动态的协同优化。算例验证了该框架在满足暂态稳定性前提下获取经济性投资方案的有效性。
English Abstract
This paper proposes a transient stability-driven planning framework for the optimal sizing problem of resilient AC/DC hybrid microgrids (HMGs) under different types of contingencies, capturing frequency and voltage stability requirements as well as the frequency-voltage coupling dynamics of AC/DC interlinking converters (ICs). The planning model is formulated into a defender-attacker-defender (DAD) architecture, which can be further merged into two levels, i.e., upper-level and low-level problems, and then iteratively solved by an enhanced genetic algorithm with sparsity calculation and local search. Regarding the operation stage, a novel transient stability-constrained optimal power flow (TSC-OPF) algorithm is proposed for static and transient operations of HMGs, capturing governor dynamics and automatic voltage regulator of conventional generators as well as the droop control dynamics of inverter-based resources (IBRs) for frequency control and voltage control, respectively. Furthermore, a Lyapunov optimisation approach is developed to capture the time-coupling property of energy storages (ESs) and then allow the TSC-OPF to be solved on an hourly basis with a second-scale resolution, achieving the co-optimisation of static and transient stability requirements. Case studies have been conducted to verify the effectiveness of the proposed planning framework in obtaining cost-effective investment decisions for various resources while respecting transient stability requirements under different contingencies.
S
SunView 深度解读
该暂态稳定性驱动规划框架对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。研究中的TSC-OPF方法与Lyapunov优化可直接应用于交直流混合微电网场景下的储能容量配置,特别是在工商业微电网和离网系统中。文中提出的频压耦合动态建模可优化阳光电源双向变流器的控制策略,增强系统在故障扰动下的暂态稳定性。DAD防御框架为iSolarCloud云平台提供了弹性规划工具,实现储能系统经济性与安全性的协同优化。下垂控制动态分析可进一步完善阳光电源VSG虚拟同步机技术,提升构网型储能系统在弱电网环境下的稳定运行能力。