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基于双向功率流的直流微电网在网络安全攻击下的无缝分布式功率管理
Seamless Distributed Power Management of DC Microgrid Under Cyber Attacks With Bidirectional Power Flow
| 作者 | Dat Thanh Tran · Kyeong-Hwa Kim · Jih-Sheng Lai |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2025年2月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 下垂控制 地面光伏电站 微电网 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 直流微电网 分布式二次控制 网络攻击 直流母线电压 分布式电源管理 |
语言:
中文摘要
本文提出一种面向双向功率流的直流微电网无缝分布式功率管理方法,可在严重网络攻击下实现系统整体稳定。基于V*–P下垂曲线的分布式二级控制确保在不确定性条件下对电动汽车、风力机、电池、负荷及电网代理构成的系统进行功率与电压调节,并随电价动态调整电网下垂曲线以降低用电成本。通过引入补偿项的弹性控制策略,有效抑制虚假数据注入和拒绝服务等网络攻击的影响。改进的控制结构显著减小了电压超调,且仅需单向数字通信链路,降低了系统成本与通信负担。仿真与实验验证了该方案的有效性与可行性。
English Abstract
A seamless distributed power management for the dc microgrid (dcMG) with bidirectional power flow is presented in this article to achieve the overall system stabilization even under severe cyber attacks. First, a distributed secondary control (DSC) based on the V^ –P droop curves is presented to ensure the power and voltage regulation for the dcMG system consisting of the electric vehicle (EV), wind turbine, battery, load, and utility grid agents under uncertain conditions. The proposed scheme automatically adjusts the utility grid droop curve to minimize electricity expenditure under electricity price change. To eliminate the negative effect of severe cyber attacks such as false data injection (FDI) and denial-of-service (DoS) in the distributed dcMG system, a resilient DSC based on the compensation term is utilized in the proposed scheme. In addition, by modifying the DSC structure of each power agent, the proposed scheme reduces the overshoot of the dc bus voltage (DBV) even in the presence of the electricity price change, agent power variation, sudden utility grid disconnection, or critical state-of-charge (SOC) levels. Furthermore, the proposed distributed dcMG system utilizes only the unidirectional digital communication links (DCLs) to cut down the system cost and communication burden, which greatly simplifies communication structure. The efficiency and feasibility of the proposed distributed power management are validated by simulation and experimental results under various conditions.
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SunView 深度解读
该网络攻击防护下的分布式功率管理技术对阳光电源PowerTitan储能系统和微电网解决方案具有重要应用价值。文中V*-P下垂控制与弹性补偿策略可直接应用于ST系列储能变流器的二级控制层,增强系统抵御虚假数据注入和DoS攻击的能力,提升iSolarCloud云平台通信安全性。双向功率流管理方案适配光储充一体化场景,优化SG逆变器、储能系统与充电桩的协同调度。电价驱动的动态下垂曲线调整策略可集成至能量管理系统,降低工商业储能项目运营成本。单向通信架构设计为阳光电源分布式能源系统降低通信成本提供参考,改进的控制结构对抑制电压超调、提升并网稳定性具有实践指导意义。