Event-triggered detection of cyberattacks on load frequency control

被引:14
|
作者
Patel, Aradhna [1 ]
Purwar, Shubhi [1 ]
机构
[1] MNNIT Allahabad, Elect Engn Dept, Prayagraj, India
关键词
Kalman filters; smart power grids; frequency control; power system control; security of data; load regulation; power engineering computing; power system stability; power generation control; power system state estimation; observers; power generation faults; power system security; Lyapunov methods; effective cyber protection; indispensable requirement; smart grids; false data injection attack; load frequency control; stealth process; devastating consequences; catastrophic system blackouts; LFC system vulnerability; FDI attacks; LFC protection; ET-GESO; Lyapunov stability analysis; event-triggering condition; communication burden; extensive simulation studies; peer-reported two-area power transacting system; IEEE 39-bus New England system; Kalman filter-based detection scheme; cyberattacks; modern power systems; data communication; integrated controls; FDI attack formulations; event-triggered generalised extended state observer; event-triggered detection scheme; Zeno behaviour exclusion; CYBER-PHYSICAL ATTACKS; DATA INJECTION ATTACKS; STATE ESTIMATION; FAULT-DETECTION; SYSTEMS; NETWORKS; DESIGN;
D O I
10.1049/iet-cps.2019.0067
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Modern power systems are extensively interlaced with data communication at various levels leading to increased vulnerability to cyberattacks at individual components as well as integrated controls. An effective cyber protection is, therefore, fast becoming an indispensable requirement for the smart grids. A false data injection (FDI) attack on load frequency control (LFC) is a stealth process, which has devastating consequences while at times may also lead to catastrophic system blackouts. This work comprises detailed analyses of the LFC system vulnerability to FDI attacks. It further develops an efficient event-triggered detection scheme to leverage the LFC protection against FDI attacks. This developed event-triggered generalised extended state observer (ET-GESO) uses Lyapunov stability analysis to derive the event-triggering condition and thereby reduce the communication burden significantly. The feasibility of the proposed ET-GESO is further studied by demonstrating its Zeno behaviour exclusion. Extensive simulation studies are performed on a peer-reported two-area power transacting system and IEEE 39-bus New England system. A comparison study between the proposed technique and reported Kalman filter-based detection scheme is also performed. Different FDI attack formulations and their detection illustrate the effectiveness of the proposed detection method.
引用
收藏
页码:263 / 273
页数:11
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