SOC balance-based decentralized control strategy for hybrid energy storage in integrated power systems

被引:0
作者
Xueping Gao
Lijun Fu
Yan Zhang
Feng Ji
机构
[1] Naval University of Engineering,National Key Laboratory of Science and Technology On Vessel Integrated Power System
来源
Journal of Power Electronics | 2022年 / 22卷
关键词
Integrated power system; Hybrid energy storage; Pulse load; Extended droop control; SOC balance;
D O I
暂无
中图分类号
学科分类号
摘要
The hybrid energy storage systems (HESSs) in vessel integrated power systems can support pulse load and improve system stability. However, the unbalanced SOC of different energy storage devices can cause over-charge and over-discharge which damages the energy storage devices and affects the stable operation of the entire system, especially when there are multiple groups of HESSs. Therefore, a decentralized control strategy for the HESSs in integrated power systems (IPSs) based on extended droop control combined with SOC balance control is proposed in this paper. In the proposed strategy, SOC recovery control is introduced to the virtual capacitance droop coefficient of the supercapacitor, and SOC equalization control is introduced to the virtual resistance droop coefficient of the lithium battery to adjust the output characteristics of the HESS according to the SOC. Then the frequency response characteristics are analyzed and the stability of the system is calculated. Finally, the hardware in loop simulation is conducted to verify the effectiveness of the proposed strategy. Comparisons show that the proposed strategy can compensate for the pulse load according to the responding characteristics of the HESS and achieve SOC balance between different energy storage devices under various working conditions.
引用
收藏
页码:2081 / 2091
页数:10
相关论文
共 59 条
[11]  
Liu Y(2018)Mitigating power fluctuations in electrical ship propulsion mitigating power fluctuations in electric ship propulsion with hybrid energy storage system: design and analysis IEEE J Ocean Eng. 43 93-107
[12]  
Wang H(2020)Distributed cooperative control of multiple hybrid energy storage systems in a DC microgrid using consensus protocol IEEE Trans. Industr. Electron. 67 1968-1979
[13]  
Zhang Q(2019)Adaptive power allocation strategy based on fuzzy logic algorithm for hybrid energy storage system in DC microgrid Proc CSEE. 39 2658-2670
[14]  
Wen Y(2020)Decentralized control algorithm for the hybrid energy storage of shipboard power system IEEE J Emerg Sel Topics Power Electron 8 720-731
[15]  
Hu W(2018)An integral droop for transient power allocation and output impedance shaping of hybrid energy storage system in dc microgrid IEEE Trans Power Electron 33 6262-6277
[16]  
Zhang H(2015)Frequency-coordinating virtual impedance for autonomous power management of dc microgrid IEEE Trans. Power Electron. 30 2328-2337
[17]  
Mo R(2017)A decentralized dynamic power sharing strategy for hybrid energy storage system in autonomous DC microgrid RE Trans. Ind. Electron. 64 5930-5941
[18]  
Li H(2020)A novel virtual resistor and capacitor droop control for HESS in medium-voltage DC system RE Trans. Ind. Electron. 67 1968-1979
[19]  
Lashway CR(2017)A decentralized power management strategy for hybrid energy storage system with autonomous bus voltage restoration and state-of-charge recovery IEEE Trans Sustain Energ 8 5930-5941
[20]  
Elsayed AT(undefined)undefined undefined undefined undefined-undefined