A multi-objective distribution network partitioned voltage active-reactive coordination control strategy based on Synchronous ADMM
Huifeng Wang, Bowen Zou, Song Zhigang, Lei Song, Yue Gao, Miaomiao Wang, Xin Wang · 2024
In the face of the increasingly intricate and fluid landscape of contemporary power systems, the effective administration of distribution networks has emerged as a pivotal issue for electricity companies. In light of this, this paper proposes a multi-objective distribution network partitioned voltage active-reactive coordination control strategy based on Synchronous ADMM. Firstly, a holistic electrical distance metric, regional coupling intensity, and regional reactive power equilibrium indicator have been formulated for the distribution network. The PSO technique is employed for the network partitioning process. Secondly, based on the regional partitioning, a regional voltage autonomous model is constructed with the objective function of minimizing the sum of photovoltaic active power reduction, node voltage deviation, and network loss. Finally, network is partitioned and decoupled, and the synchronous ADMM algorithm is utilized to achieve coordinated optimization control of voltage levels based on inter-regional information exchange. The simulations performed on the improved IEEE 33-node distribution network validate the effectiveness of the proposed regional voltage control strategy. This method is demonstrated to markedly enhance the general voltage quality and boost the safety and stability of the distribution network.