← 返回
控制与算法 ★ 5.0

通过分布鲁棒稳定性约束优化管理系统动态中的不确定性

Managing the Uncertainty in System Dynamics Through Distributionally Robust Stability-Constrained Optimization

作者 Zhongda Chu · Fei Teng
期刊 IEEE Transactions on Power Systems
出版日期 2024年6月
技术分类 控制与算法
相关度评分 ★★★★★ 5.0 / 5.0
关键词 逆变器资源 稳定约束优化 参数不确定性 不确定性传播 分布鲁棒优化
语言:

中文摘要

随着基于逆变器的电源(IBRs)渗透率的不断提高及其对电力系统稳定性和运行的影响,稳定性约束优化的概念受到了研究人员的广泛关注。为了应对因建模不准确导致的影响系统动态特性的参数不确定性问题,本文提出了一种分布鲁棒稳定性约束公式。然而,系统动态参数的不确定性通过非线性和隐式关系间接影响稳定性约束。为解决这一问题,本文建立了从系统动态参数的不确定性到稳定性约束系数的传播机制。由于这些系数通过高度非线性和隐式函数与不确定参数相关联,本文开发了一种利用泰勒展开和德尔塔方法的近似方法,基于一阶和二阶导数来估计稳定性约束系数的统计矩,进而构建用于分布鲁棒优化的模糊集。通过对改进的IEEE 39节点系统进行详细的案例研究,验证了不确定性传播的准确性以及分布鲁棒稳定性约束的有效性。

English Abstract

With the increasing penetration of Inverter-Based Resources (IBRs) and their impact on power system stability and operation, the concept of stability-constrained optimization has drawn significant attention from researchers. In order to manage the parametric uncertainty due to inaccurate modeling that influences the system dynamics, this work proposes a distributionally robust stability constraint formulation. However, the uncertainty of system dynamic parameters influences the stability constraints indirectly through a nonlinear and implicit relationship. To address this issue, a propagation mechanism from the uncertainty of the system dynamic parameters to the stability constraint coefficients is established. Since these coefficients are connected to the uncertain parameters through highly nonlinear and implicit functions, an approximation approach utilizing Taylor expansion and the Delta method is developed to estimate the statistical moments of the stability constraint coefficients based on the first and second-order derivatives, with which an ambiguity set for the distributionally robust optimization can be formulated. The accuracy of the uncertainty propagation as well as the effectiveness of the distributionally robust stability constraints are demonstrated through detailed case studies in the modified IEEE 39-bus system.
S

SunView 深度解读

该分布鲁棒稳定性约束优化技术对阳光电源储能与光伏产品具有重要应用价值。针对ST系列储能变流器和PowerTitan大型储能系统,该方法可在不确定性条件下优化构网型GFM控制参数,保障高IBR渗透率场景下的小信号稳定性。对于SG系列光伏逆变器集群调度,可通过分布鲁棒框架处理光照间歇性不确定性,在最坏情况分布下仍保证系统稳定裕度。该技术可集成至iSolarCloud平台,实现储能-光伏混合电站的鲁棒调度优化,提升虚拟同步机VSG参数自适应能力,增强电网支撑服务的可靠性,为大规模新能源并网提供理论支撑。