A review on wide-area damping control to restrain inter-area low frequency oscillation for large-scale power systems with increasing renewable generation
Inter-area low frequency electromagnetic oscillation (LFEO) in inter-connected power
systems is one of the major barriers to improve the dynamic performance of power systems …
systems is one of the major barriers to improve the dynamic performance of power systems …
A comprehensive study of wide-area damping controller requirements through real-time evaluation with operational uncertainties in modern power systems
In interconnected modern power systems, renewable energy sources, HVDC transmission
lines, and energy storage devices are growing after being installed globally with …
lines, and energy storage devices are growing after being installed globally with …
Stability analysis of power systems with inclusion of realistic-modeling WAMS delays
This paper studies the impact of realistic wide-area measurement system (WAMS) time-
varying delays on the dynamic behavior of power systems. A detailed model of WAMS …
varying delays on the dynamic behavior of power systems. A detailed model of WAMS …
Wide-area measurement system-based low frequency oscillation damping control through reinforcement learning
Ensuring the stability of power systems is gaining more attention today than ever before due
to the rapid growth of uncertainties in load and increased renewable energy penetration …
to the rapid growth of uncertainties in load and increased renewable energy penetration …
Design and implementation of delay-dependent wide-area damping control for stability enhancement of power systems
In this paper, the hardware and software design and implementation are proposed for the
wide-area damping control (WADC) strategies. First, the hardware-in-the-loop (HIL) real …
wide-area damping control (WADC) strategies. First, the hardware-in-the-loop (HIL) real …
Q-learning-based damping control of wide-area power systems under cyber uncertainties
The installation of phasor measurement units brings about system-wide synchronized real-
time measurements, which makes advanced closed-loop control of wide-area power …
time measurements, which makes advanced closed-loop control of wide-area power …
Time-delay analysis of wide-area voltage control considering smart grid contingences in a real-time environment
This paper addresses the time-delay effects of the wide-area monitoring and control systems
(WAMCS) in smart power grids which may critically impact system stability. The main …
(WAMCS) in smart power grids which may critically impact system stability. The main …
Adaptive wide‐area power oscillation damper design for photovoltaic plant considering delay compensation
With the increasing amount of grid‐connected photovoltaic (PV) plants in a power system,
the volatility and uncertainty of power generated from PV plants may adversely impact on the …
the volatility and uncertainty of power generated from PV plants may adversely impact on the …
[HTML][HTML] Micro-flexibility: Challenges for power system modeling and control
This paper collects the challenges and opportunities that emerge from the millions of
controllable devices–and the micro-flexibility they offer–that are deployed across the …
controllable devices–and the micro-flexibility they offer–that are deployed across the …
Spatial–temporal feature learning in smart grids: A case study on short-term voltage stability assessment
The advancing machine learning techniques have been widely applied to data-driven
dynamic stability assessment (DSA) in modern smart grids. However, how to extract critical …
dynamic stability assessment (DSA) in modern smart grids. However, how to extract critical …