×

img Accessibility Controls

Research Projects Banner

Research Projects

Cyberattack-Resilient Adaptive Wide-Area Control for Frequency Regulation and Inter-Area Oscillation Damping in Renewable-Dominated Power Systems

Implementing Organization

Principal Investigator
Dr. Abhineet Prakash
Indian Institute Of Technology Bhubaneswar
abhineetprakash1@gmail.com
CO-Principal Investigator
Dr. Pankaj Dilip Achlerkar
Indian Institute Of Technology Bhubaneswar, Argul - Jatni Road, Kansapada,Odisha,Khordha-752050

Project Overview

The transition to a decarbonized electric grid is accelerating the deployment of renewable energy sources (RESs), such as wind and solar, which are inherently intermittent, uncertain, and inertialess. These characteristics pose significant challenges for maintaining power system frequency stability and damping inter-area oscillations, especially in large interconnected grids. To address these challenges, the proposed project aims to develop a cyberattack-resilient adaptive wide-area control framework that ensures combined frequency regulation and inter-area oscillations (IAOs) damping under high-RES penetration. Modern wide-area measurement systems (WAMS) comprising Phasor Measurement Units (PMUs) enable real-time monitoring and control across large geographical areas. However, their dependence on communication networks and digital infrastructure exposes them to cybersecurity threats, such as false data injection (FDI), denial of service (DoS) attacks, and random delays. These attacks can compromise measurement integrity, mislead control actions, and destabilize the power system. Existing wide-area control designs often overlook such threats, assuming secure, delay-free, and accurate data transmission, which is an unrealistic assumption in modern cyber-physical systems. In this view, this project proposes a novel adaptive wide-area damping controller (WADC) for combined frequency regulation and inter-area oscillation (IAO) damping that is resilient to cyberattacks, communication delays, and operating point uncertainties. The outcomes will benefit system operators, grid planners, and policy makers by offering a resilient control solution compatible with the evolving smart grid landscape.
Funding Organization
Quick Information
Area of Research
Engineering Sciences
Focus Area
Power System/Power Engineering, Electric Vehicle
Start Date
27 Mar 2026
End Date
26 Mar 2029
Status
ongoing
Output
No. of Research Paper
00
Technologies (If Any)
00
No. of PhD Produced
00
Publications
00
No. of Patents
Filed : 00
Grant : 00
arrowtop
Latest Updates
Loading…