A Primal-Dual Interior-Point algorithm for nonlinear ACOPF with adaptively reformulated Volt-Var constraints
提出一种内点法求解嵌入伏瓦曲线的非线性交流最优潮流问题,无需线性化或松弛,实现配电网集中与本地协调控制,算例验证了可扩展性和鲁棒性。
The increasing penetration of generation from renewable energy sources in distribution networks poses significant challenges for voltage regulation and network operation. Automatic volt-var control is widely adopted to address voltage issues; however, its integration into optimization-based distribution network management frameworks is often addressed through simplified approximations or multi-stage coordination schemes, which may compromise physical accuracy or computational efficiency. We develop an Interior-Point-based solution approach that embeds volt-var curves directly within a nonlinear AC optimal power flow (ACOPF) formulation, enabling coordinated centralized and local control in power distribution networks. The resulting formulation allows solving the problem without the use of linearizations, convex relaxations, or mixed-integer representations. An extensive computational study covering a large set of distribution network instances demonstrates the scalability, robustness, and practical applicability of the proposed approach.