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Publishing Language: Chinese | Open Access

Review of Hierarchical-Zonal Balancing Architectures in New Power Systems

College of Automation, Nanjing University of Posts and Telecommunications, Nanjing 210023, Jiangsu Province, China
School of Modern Posts, Nanjing University of Posts and Telecommunications, Nanjing 210023, Jiangsu Province, China
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Abstract

In response to the challenges where large-scale renewable energy integration leads to intricate source-network-load-storage elements and surging complexity in new power systems, rendering traditional balancing architectures and hierarchical analysis methods inadequate, theoretical achievements and research technologies regarding hierarchical and partitioned balance architectures are comprehensively reviewed. The adaptability requirements of new power systems for such architectures are elucidated, followed by a summary and comparative analysis of existing hierarchical control and partitioning strategies. Furthermore, layer-zone fusion mechanisms are explored, and existing technical limitations are analyzed from data and modeling perspectives. The results indicate that while renewable energy control pressures can be alleviated by existing strategies, deficiencies remain in handling massive heterogeneous data fusion and precise modeling of complex systems; moreover, high dynamic balance demands are difficult to be met by current layer-zone coordination mechanisms. Future hierarchical and partitioned balance architectures are identified as a critical direction for supporting the operation of new power systems. Notably, a novel technical pathway for achieving safe and efficient operation under the “carbon neutralization and carbon peaking” goals is offered by the introduction of large models and artificial intelligence technologies.

CLC number: TK 01 Document code: A

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Distributed Energy
Pages 1-10

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Cite this article:
GUO C, GAO H, LI W, et al. Review of Hierarchical-Zonal Balancing Architectures in New Power Systems. Distributed Energy, 2026, 11(1): 1-10. https://doi.org/10.16513/j.2096-2185.DE.25100139

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Received: 17 June 2025
Revised: 14 September 2025
Accepted: 05 November 2025
Published: 25 February 2026
© Editorial Department of Distributed Energy Journal 2026. Published by Tsinghua University Press.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).