Liu Yancheng, Zeng Yuji, Zhang Qinjin, You Shi, Guo Haohao, Hu Yuanting, Zhang Fengkui
Marine Engineering College, Dalian Maritime University, Dalian 116026, People's Republic of China.
Marine Engineering College, Dalian Maritime University, Dalian 116026, People's Republic of China.
ISA Trans. 2024 Mar;146:421-436. doi: 10.1016/j.isatra.2023.12.043. Epub 2024 Jan 3.
In this paper, a multi-objective cooperative (MOC) controller based on average consensus algorithm is designed to achieve rapid State-of-Charge (SoC) balancing, proportional load current sharing, and flexible DC bus voltage regulation for parallel battery storage units (BSUs) in shipboard DC microgrids. Different from the conventional secondary controllers, the designed MOC controller can simultaneously achieve the above three control objectives with a fully distributed manner without requiring multiple controllers, thereby effectively improving the system stability and reducing the communication burden. Furthermore, an optimized convergence factor is designed to accelerate SoC balancing, and pinning control is introduced to obtain flexible and accurate DC bus voltage regulation. The process of SoC balancing and current sharing analysis, SoC convergence performance analysis, large-signal stability analysis, and global steady-state analysis verifies the rationality and stability of the MOC controller. Finally, the Matlab/Simulink simulation and StarSim HIL experimental results demonstrate the effectiveness and robustness of the designed MOC controller in a shipboard DC microgrid under various testing scenarios.
本文设计了一种基于平均一致性算法的多目标协同(MOC)控制器,用于实现舰载直流微电网中并联电池储能单元(BSU)的快速充电状态(SoC)均衡、按比例分配负载电流以及灵活的直流母线电压调节。与传统的二次控制器不同,所设计的MOC控制器能够以完全分布式的方式同时实现上述三个控制目标,无需多个控制器,从而有效提高系统稳定性并减轻通信负担。此外,设计了一个优化的收敛因子来加速SoC均衡,并引入牵制控制以实现灵活且精确的直流母线电压调节。SoC均衡和电流分配分析、SoC收敛性能分析、大信号稳定性分析以及全局稳态分析的过程验证了MOC控制器的合理性和稳定性。最后,Matlab/Simulink仿真和StarSim硬件在环实验结果证明了所设计的MOC控制器在舰载直流微电网各种测试场景下的有效性和鲁棒性。