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通过电动汽车参与的改进控制策略管理无功功率并降低交直流混合微电网互联变换器容量
An Improved Control Strategy for Managing Reactive Power and Reducing Capacity of Interlinking Converters by Participating of Electric Vehicles in Hybrid AC/DC Microgrids
| 作者 | Abbas Safari · Hesam Rahbarimagham |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 下垂控制 微电网 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 交直流混合微电网 接口变换器 分层控制 无功功率控制 电动汽车 |
语言:
中文摘要
基于接口变换器的交直流混合微电网在智能电网中广受关注。接口变换器通过先进准确控制策略可执行精确功率共享、电能质量增强、双向功率传输等任务。本文提出基于直流电压下垂的分层控制,实现混合交直流微电网中接口变换器的双向功率传输。该方法可根据各子网需求在交流或直流子网间交换有功功率,直流电压围绕额定值轻微偏移。提出无功功率控制算法,可基于接口变换器最大额定容量补偿交流子网无功功率。研究电动汽车参与直流子网对改善无功管理和降低接口变换器容量的影响。电动汽车双向升压变换器电压控制环路中考虑另一下垂控制,通过电池储能系统充放电确定电动汽车在无功管理中的参与率。Simulink MATLAB仿真结果表明,采用所提控制方法和电动汽车最大参与,接口变换器无功补偿显著改善,额定容量降低。
English Abstract
Nowadays, interface converters based hybrid AC/DC microgrids have gained great interests in smart grids. The interface converters can perform tasks such as accurate power sharing, power quality enhancement, bidirectional power transmission, and so on by using advanced and accurate control strategies. In this work, a dc voltage droop based hierarchical control is introduced for bidirectional power transfer by an interface converter in a hybrid AC/DC microgrid. This proposed approach can exchange active power between AC or DC subgrids according to the requirement of each subgrid with slight DC voltage deviation around its nominal value. Moreover, a reactive power control algorithm is presented which can compensate the reactive power of the AC subgrid based on the interface converter’s maximum rated capacity. Also, the impact of the participation of electric vehicles in the DC subgrid on the improvement of reactive power management and the capacity reduction of the interface converter is investigated. Another droop control is considered in the voltage control loop of the bidirectional boost converter in the electric vehicle to determine the participation rate of the electric vehicle in reactive power management through the charging and discharging of its battery storage system. The simulation results in Simulink MATLAB software illustrate that the compensation of reactive power by the interface converter improves significantly by employing the proposed control method and the maximum participation of electric vehicles, leading to a decrease in the rated capacity of the interface converter.
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SunView 深度解读
该交直流混合微电网控制技术与阳光电源微电网解决方案高度相关。阳光微电网系统需要高效的交直流互联变换器和功率管理策略。下垂控制方法与阳光分布式控制理念一致。EV参与无功管理的思路可应用于阳光V2G和光储充一体化项目。接口变换器容量优化对阳光降低系统成本有重要价值。该研究验证的双向功率传输和无功补偿能力,可支撑阳光开发更高效的交直流混合微电网产品和控制策略。