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Energies, Vol. 19, Pages 637: Topology Design and Control Optimization of Photovoltaic DC Boosting Collection Systems: A Review and Future Perspectives

Energies, Vol. 19, Pages 637: Topology Design and Control Optimization of Photovoltaic DC Boosting Collection Systems: A Review and Future Perspectives

Energies doi: 10.3390/en19030637

Authors:
Tingting Li
Xue Zhai
Zhixin Deng
Linyu Zhang
Xiaochuan Liu
Xiaoyue Chen

Driven by the global energy transition, the rapid expansion of photovoltaic (PV) capacity—particularly in China’s “sand-Gobi-desert” mega-bases—demands highly efficient collection technologies. DC collection, offering low losses, compactness, and high reliability, is emerging as a critical solution for large-scale integration. This paper provides a comprehensive review of PV DC step-up collection systems. First, it analyzes typical network architectures, compares AC versus DC schemes, and examines design constraints imposed by DC bus voltage levels. Second, control strategies are summarized across device, equipment, and system levels. Third, based on engineering practices in ultra-large-scale bases, key challenges regarding fault detection, efficiency optimization, economic viability, and grid code compatibility are identified alongside representative solutions. Finally, future trends in high-voltage hardware maturation, protection bottlenecks, real-time artificial intelligence, and specialized standardization are proposed. This study serves as a vital reference for the topology design and engineering standardization of PV DC collection systems.

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