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Academic Journal of Engineering and Technology Science, 2025, 8(2); doi: 10.25236/AJETS.2025.080213.

Near-Zero Carbon Demonstration Zone “Source-Grid-Load-Storage-Use” Collaborative Technologies and Applications—A Case Study of Shunde Kawasaki Industrial Park

Author(s)

Zhihui Tu

Corresponding Author:
Zhihui Tu
Affiliation(s)

Guangdong Shunde Power Design Institute Co. ,Ltd., Foshan, Guangdong, 528300, China

Abstract

Under the guidance of the “dual carbon” strategy, the construction of near-zero carbon industrial parks has become a key pathway for promoting the green transformation of industries. This paper takes Shunde Kawasaki Industrial Park as a case study, focusing on the “Source-Grid-Load-Storage-Use” collaborative system. It explores the integration of distributed photovoltaic systems, energy storage systems, energy-carbon management platforms, and intelligent energy systems to create an integrated energy management system that is perceptible, controllable, and operable, aiming to improve the utilization of clean energy and energy management efficiency. The goal is to provide technical references for the construction of near-zero carbon parks.

Keywords

Near-zero carbon demonstration zones; Source-Grid-Load-Storage-Use collaboration; Smart parks; Energy management; Virtual power plants

Cite This Paper

Zhihui Tu. Near-Zero Carbon Demonstration Zone “Source-Grid-Load-Storage-Use” Collaborative Technologies and Applications—A Case Study of Shunde Kawasaki Industrial Park. Academic Journal of Engineering and Technology Science(2025), Vol. 8, Issue 2: 96-102. https://doi.org/10.25236/AJETS.2025.080213.

References

[1] Fu, Liguo. Collaborative Optimization and Interactive Technology of Source-Grid-Load-Storage in New Power Systems[J]. Lighting and Illumination, 2024, 48(04): 88-91.

[2] Xu, Feifei, Yuan, Jinxia. Collaborative Interactive Technology of Source-Grid-Load-Storage Based on New Power Systems[J]. China Construction, 2024, (10): 175-177.

[3] Wang, Ziqi, Li, Jianqiang, Wang, Kun. Promoting the Collaborative Development of Source-Grid-Load-Storage[J]. Henan Electric Power, 2024, (04): 14-15.

[4] Li Mingjia, Guo Jiaqi, Ma Teng, et al. Research Status and Development Trends of 'Source-Grid-Load-Storage' Integrated Heterogeneous Energy Flow Supply Systems[J]. Chinese Science Bulletin, 2023, 68(15): 1941–1958.

[5] Wei, Sidian, Liu, Yu. Collaborative Planning Simulation Analysis of Power Systems with High Wind Power Proportion[J]. Electromechanical Information, 2024, (03): 21-24.

[6] Ma, Junliang, Wang, Zhidong, Zhang, Shuming. Collaborative Planning of Source-Grid-Load-Storage Considering County-level Photovoltaic Potential Assessment[J]. Journal of Northeast Electric Power University, 2023, 43(03): 82-90.