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September 10, 2025ProcessesOpen Access

Multi-Objective Cooperative Optimization Model for Source–Grid–Storage in Distribution Networks for Enhanced PV Absorption

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Authors

PZPu ZhaoSouth China Normal UniversityXLXiao LiuDeakin UniversityHQHanbing QuShanghai Electric (China)

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Overview

Analysis reveals a dual layer optimization model enhances PV utilization and minimizes costs through energy-storage systems.

Key Points

  • The proposed method reduces annual costs by 6.6%, enhancing economic efficiency in distribution networks.
  • Simulation results show a 28.9% improvement in PV utilization while keeping voltage deviations below 6.3%.
  • A dual layer optimization model addresses voltage violations and network losses while optimizing resource integration.
  • This framework provides practical guidance for the coordinated integration of distributed photovoltaics and energy-storage systems.

Cite This Study

Zhao et al. (2025) studied this question.

synapsesocial.com/papers/68c192579b7b07f3a0616e83https://doi.org/10.3390/pr13092841
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  1. 1Multi-objective Site Selection and Capacity Optimization of Distributed PV Energy Storage in Smart Distribution Network Based on Non-cooperative Game2025
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  3. 3Multi-objective Optimal Allocation Strategy for Distributed Energy Storage in Distribution Networks Adapted to High Penetration Distributed Photovoltaics2024
  4. 4Multi-Objective Optimal Sizing and Coordinated Energy Management of PV–BESS-Based Multiple Microgrids in Distribution Systems2026
  5. 5A study on the dual-layer energy storage configuration in photovoltaic distribution networks considering voltage-loss synergy optimisation2026