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基于分布鲁棒优化的含快速频率响应低惯量电力系统恢复方法
System Restoration for Low-Inertia Power Systems Incorporating Fast Frequency Response via Distributionally Robust Optimization
| 作者 | Zhijun Qin · Yunming Li · Xinwei Chen · Hui Liu |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2024年10月 |
| 技术分类 | 风电变流技术 |
| 技术标签 | 储能系统 SiC器件 DAB |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 低惯量电力系统 系统恢复 滚动时域方法 双层优化模型 可再生能源 |
语言:
中文摘要
高比例可再生能源导致系统惯量下降与不确定性增加,给大停电后的系统恢复带来挑战。本文研究低惯量电力系统的可恢复性,提出滚动时域框架下的序贯决策方法,优化黑启动、电网 energization、风电重连与负荷恢复。针对风电重连引入的时变外生不确定性,构建双层优化模型:上层结合最小系统惯量常数(MSIC)与快速频率响应(FFR)确定非黑启动机组及可接纳风电容量增量;下层通过前导确定性模型与考虑风电不确定性的分布鲁棒优化模型,分别确保功率平衡与非同步渗透水平(SNSP)安全。基于IEEE 14节点与118节点系统的稳态与动态仿真表明,RES可在MSIC与SNSP约束下实现系统恢复,FFR通过提供额外惯量支持可加速恢复进程,适用于风电渗透率高达50%的系统。
English Abstract
The high share of renewable energy sources (RESs) in power system creates inertia shortfalls, posing challenges in system restoration after a major outage due to lower system inertia and high RES uncertainty. In this paper, the restorability of low-inertia power systems is studied. A rolling horizon methodology is derived to construct restoration strategies by performing sequential decision-making to optimize blackstart, grid energization, wind power re-connection, and load pickup. Notably, wind power re-connection will introduce time-varying exogenous uncertainty for other restoration actions. To decouple exogenous uncertainty, a bi-level optimization model is built, where the upper-level determines the set of non-blackstart units and increment of grid-accommodable wind capacity, considering Minimum System Inertia Constant (MSIC) and Fast Frequency Response (FFR). The lower-level yields a secure operating point ensuring power balance and System Non-Synchronous Penetration (SNSP). The former is formulated as a look-ahead deterministic optimization model, while the latter as a distributionally robust optimization model considering wind uncertainty. Steady-state and dynamics simulation using the IEEE 14-bus system and 118-bus system are provided, demonstrating that RES can perform system restoration safeguarded by MSIC and SNSP, and FFR can accelerate restoration by providing extra inertia support for systems with up to 50% share of wind capacity.
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SunView 深度解读
该研究对阳光电源储能与光伏产品的大规模并网具有重要指导意义。研究提出的FFR快速频率响应策略可直接应用于ST系列储能变流器的GFM控制算法优化,提升系统黑启动与恢复能力。MSIC最小惯量约束与SNSP非同步渗透率指标可用于PowerTitan储能系统的容量配置与控制策略设计。对于SG系列光伏逆变器,该研究的分布鲁棒优化方法有助于提升高渗透率场景下的并网稳定性。建议在iSolarCloud平台增加基于该方法的系统惯量评估与调度功能,为大型新能源电站提供更可靠的恢复保护方案。