He, Y.; Zuo, Z.; Shen, K.; Gao, J.; Chen, Q.; Liu, J.; Liu, H.
Sim-Geometry Modal Decomposition (SGMD)-Based Optimization Strategy for Hybrid Battery and Supercapacitor Energy Storage Frequency Regulation. Symmetry 2025, 17, 1356.
https://doi.org/10.3390/sym17081356
AMA Style
He Y, Zuo Z, Shen K, Gao J, Chen Q, Liu J, Liu H.
Sim-Geometry Modal Decomposition (SGMD)-Based Optimization Strategy for Hybrid Battery and Supercapacitor Energy Storage Frequency Regulation. Symmetry. 2025; 17(8):1356.
https://doi.org/10.3390/sym17081356
Chicago/Turabian Style
He, Yongling, Zhengquan Zuo, Kang Shen, Jun Gao, Qiuyu Chen, Jianqun Liu, and Haoyu Liu.
2025. "Sim-Geometry Modal Decomposition (SGMD)-Based Optimization Strategy for Hybrid Battery and Supercapacitor Energy Storage Frequency Regulation" Symmetry 17, no. 8: 1356.
https://doi.org/10.3390/sym17081356
APA Style
He, Y., Zuo, Z., Shen, K., Gao, J., Chen, Q., Liu, J., & Liu, H.
(2025). Sim-Geometry Modal Decomposition (SGMD)-Based Optimization Strategy for Hybrid Battery and Supercapacitor Energy Storage Frequency Regulation. Symmetry, 17(8), 1356.
https://doi.org/10.3390/sym17081356