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计及宽频振荡模态能量加权的主动配电网PMU优化配置方法OA

Optimal PMU Placement Method for Active Distribution Networks Considering Wideband Oscillation Modal Energy Weighting

中文摘要英文摘要

[目的]针对高比例构网型分布式电源接入主动配电网引发的次同步宽频振荡问题,传统基于纯拓扑的同步相量测量装置选址方法存在严重的动态监测盲区,为此提出一种计及宽频振荡模态能量加权的同步相量测量装置(phasor measurement unit,PMU)优化配置方法.[方法]建立含多台虚拟同步发电机的主动配电网高阶非线性微分代数方程模型,通过提取状态空间矩阵精准筛选高危宽频靶标模态;进而基于模态特征引导与阻尼比倒数,构建模态能量加权的费舍尔信息矩阵(Fisher information matrix,FIM),实现对节点宽频动态可观测度空间局域化特征的定量评估;在此基础上,提出一种融合动态FIM得分与静态拓扑增益的改进贪心配置算法,并引入空间大邻接惩罚机制,以严格保证量测节点的全局分散性.[结果]在改进的IEEE 33节点极限弱环网算例测试表明:在同等K=14的严格投资约束下,与传统整数线性规划算法及无加权FIM算法相比,所提方法实现了宽频动态能量捕获总量的绝对领先;针对最恶劣模态的综合观测度稳定突破安全裕度,时域重构波形与经验模态分解-希尔伯特黄变换频域积分双重验证了该方法有效消除了传统配置的暂态监测盲区;在50次参数摄动蒙特卡罗测试中,系统维持了零失效的极高鲁棒性.[结论]所提方法突破了纯拓扑选址的物理局限,克服了常规全状态算法的低频偏移陷阱,精准锁定了宽频谐振能量波腹,在兼顾静态拓扑满秩的同时实现了全频段动态感知的极致鲁棒性,为新型配电网广域动态监测系统规划提供了严密的理论支撑.

[Objective]To address the sub-synchronous wideband oscillation problem caused by the high penetration of grid-forming distributed energy resources in active distribution networks,traditional phasor measurement unit(PMU)placement methods based on pure topology suffer from severe dynamic monitoring blind spots.Therefore,an optimal PMU placement method considering wideband oscillation modal energy weighting is proposed.[Methods]This paper establishes a high-order nonlinear differential-algebraic equation model of an active distribution network containing multiple virtual synchronous generators(VSGs)to accurately screen high-risk wideband target modes by extracting the system state-space matrix.Subsequently,a modal energy-weighted Fisher information matrix(FIM)is formulated based on modal eigenvectors and the inverse of the damping ratio,enabling the quantitative evaluation of the spatial localization characteristics of nodal wideband dynamic observability.Building upon this,an improved greedy placement algorithm integrating dynamic FIM scores and static topological gains is proposed,incorporating a spatial large-adjacency penalty mechanism to strictly ensure the global dispersion of measurement nodes.[Results]Tests on a modified IEEE 33-node extreme weak-ring network demonstrate that,under the strict investment constraint of K=14,the proposed method achieves a significant advantage in capturing total wideband dynamic energy compared to traditional integer linear programming(ILP)and unweighted FIM algorithms.The comprehensive observability for the worst-case mode consistently exceeds the safety margin.Both time-domain reconstructed waveforms and empirical mode decomposition-Hilbert-Huang transform(EMD-HHT)frequency-domain integrations verify that the method effectively eliminates the transient monitoring blind spots inherent in traditional configurations.Furthermore,across 50 Monte Carlo parameter perturbation tests,the system maintains exceptional robustness with zero failures.[Conclusions]The proposed method breaks through the physical limitations of pure topological placement,overcomes the low-frequency bias trap of conventional full-state algorithms,and accurately identifies the antinodes of wideband resonant energy.It achieves superior robustness in full-band dynamic perception while ensuring a full-rank static topology,providing rigorous theoretical support for the planning of wide-area dynamic monitoring systems in next-generation distribution networks.

黄贤达;王磊;江伟建

上海电力大学电气工程学部,上海市 200090上海电力大学电气工程学部,上海市 200090国网浙江省嘉兴供电公司,浙江省 嘉兴市 314000

信息技术与安全科学

主动配电网宽频振荡同步相量测量装置(PMU)费舍尔信息矩阵(FIM)优化配置鲁棒性

active distribution networkwideband oscillationphasor measurement unit(PMU)Fisher information matrix(FIM)optimal placementrobustness

《电力建设》 2026 (8)

88-100,13

国家自然科学基金项目(61873159) This work is supported by National Natural Science Foundation of China(No.61873159).

10.12204/j.issn.1000-7229.2026.08.007

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