智能配电网中改进型双直流源D-STATCOM的新监控策略

Shatha S. Alkubragyi, P. Luk, J. Economou
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引用次数: 0

摘要

本研究提出了一种新的方法,将基于模糊逻辑控制器的决策应用于由双直流电源(电池和超级电容器)提供的改进型D-STATCOM转换器的电源管理,以实现鲁棒性和卓越的电压调节性能。传统的D-STATCOM是一种基于补偿器的电力电子器件,在交流电力系统中作为无功电源来保持电压稳定。然而,这些设备在缓解有功功率干扰引起的电压波动方面能力有限。为了充分发挥D-STATCOM装置的潜力,将储能技术与D-STATCOM相结合,在微电网中实现无功有功并网支持。该方法利用了D-STATCOM配置的大功率存储单元(超级电容器)和高能量存储单元(电池)的优点,避免了仅使用一个特定存储单元的限制。此外,模糊逻辑管理方法在能源之间几乎瞬间分配所需的功率。因此,有可能实现智能实时能量管理控制器,能够有效地分配HESS所需的电流,并在PCC处提供良好的电压性能。基于所导出的状态空间解析模型,利用MATLAB/SIMULINK对控制设计进行了仿真验证。综合仿真结果表明,与传统的D-STATCOM控制器相比,基于改进D-STATCOM拓扑的HESS在支持配电网不同条件下的电压稳定性方面有显著改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new Supervisory Strategy of a modified D-STATCOM with Dual DC Source in Smart Distribution Grids
This study presents a novel approach in applying a fuzzy logic controller-based decision making for power management of the modified D-STATCOM converter supplied by a dual DC source (battery and supercapacitor) to achieve a robust and superior performance for voltage regulation. Conventional D-STATCOM is a compensator-based power electronic device, employed as a reactive power source in AC power systems to maintain voltage stability. However, these devices have a limited ability to mitigate voltage fluctuations caused by active power disturbances. To fully exploit the potential of the D-STATCOM device, energy storage technology has been combined with D-STATCOM to support the grid with reactive and active power in the microgrid. The proposed approach employs the advantage of high-power storage unit (supercapacitor) and high energy storage unit (battery) with a D-STATCOM configuration to avoid the limitations of using only one specific storage unit. Furthermore, the fuzzy logic management approach distributes the power required almost instantaneously between the energy sources. Thus, it is possible to implement an intelligent real-time energy management controller able to effectively distribute the required current from the HESS and provide good performance of the voltage at the PCC. Verification of the control designs has been achieved through simulation using MATLAB/SIMULINK based on the derived analytical model in state-space form. Comprehensive simulation results show that the modified D-STATCOM topology-based HESS with a proposed fuzzy controller demonstrates significant improvements over conventional D-STATCOM controllers in supporting voltage stability under different conditions in distribution networks.
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