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储能系统技术 储能系统 SiC器件 微电网 ★ 5.0

基于矩阵编码的主级虚假数据注入攻击影响缓解方法

Matrix Coding Enabled Impact Mitigation Against Primary False Data Injection Attacks in Cyber-Physical Microgrids

作者 Mengxiang Liu · Xin Zhang · Chengcheng Zhao · Ruilong Deng
期刊 IEEE Transactions on Power Systems
出版日期 2025年1月
技术分类 储能系统技术
技术标签 储能系统 SiC器件 微电网
相关度评分 ★★★★★ 5.0 / 5.0
关键词 虚假数据注入攻击 微电网 影响缓解方案 未知输入观测器 编码矩阵
语言:

中文摘要

针对网络物理微电网中主级虚假数据注入攻击(PFDIA)的影响缓解问题,提出一种高效轻量的防御方案。该方法通过可逆编码矩阵对传输测量值进行交替编码,并在检测到攻击后触发两个半下采样未知输入观测器,利用编码与未编码数据的残差递推重构完整偏差向量,进而消除恶意影响。通过优化编码矩阵,在保证重构稳定性与隐蔽性的同时抑制系统噪声对精度的影响。实验验证了该方案的有效性、鲁棒性与低开销特性。

English Abstract

The impact mitigation against false data injection attacks (FDIAs) has become a prevailing topic in enhancing the cyber resilience of microgrids. In particular, the primary FDIA (PFDIA) injecting biases into the sensor channel of the primary controller can fake the real physical states and result in devastating control commands to the power conversion device. Nevertheless, existing impact mitigation schemes cannot handle the PFDIA due to the primary control's strict real-time requirement. Therefore, this paper proposes a time- and cost-efficient impact mitigation scheme against the PFDIA by alternately encoding the transmitted measurement with an invertible coding matrix. Specifically, when the PFDIA is detected by unknown input observers (UIOs), two additional half-downsampled UIOs, which only require simple multiplication, addition, and subtraction operations within each control cycle, will be triggered to obtain the residuals under encoded and unencoded data. The complete bias vector can be then reconstructed recursively from these two residuals, and the bias will be removed from the compromised data to eliminate the malicious attack impact. Based on the theoretical analysis of reconstruction performance, the coding matrix is optimised to minimise the system noises' impact on reconstruction accuracy subject to the reconstruction stability and the encoding's hiddenness from the adversary. Finally, extensive experimental studies are conducted to validate the effectiveness, superiority, robustness, and lightweightness of the proposed impact mitigation scheme.
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SunView 深度解读

该矩阵编码防御技术对阳光电源PowerTitan储能系统及ST系列储能变流器的网络安全防护具有重要应用价值。在大型储能电站中,iSolarCloud云平台需实时采集海量测量数据(电压、电流、SOC等),易遭受FDIA攻击导致BMS误判或功率调度失控。该方案的轻量级编码机制可集成至储能PCS通信模块,通过交替编码传输数据并利用双观测器残差重构实现攻击检测与数据恢复,在保障系统稳定性的同时避免传统加密方案的高计算开销。特别适用于多机并联的MW级储能系统,可提升构网型GFM控制下的抗网络攻击能力,为智能运维平台提供可信数据源,增强储能电站在新型电力系统中的安全可靠运行。