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Estimation and Prediction in Load frequency Control

2007 International Conference on Power Engineering, Energy and Electrical Drives, 2007
Many controllers designed for load-frequency control (LFC) in power system are based on the knowledge of system state, which is generally not measured. This paper presents a method for estimation of disturbance and system state in LFC. In power systems, measurement signals and control signals are transmitted over long distances between controller and ...
Petrović, Ivan   +2 more
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Load frequency control using classical controllers

ARID ZONE JOURNAL OF ENGINEERING, TECHNOLOGY AND ENVIRONMENT, 2022
This paper presents a solution to the problem of load frequency control of a two area power system using PI and PID controllers. In electric power systems, the load demand varies at different times of the day and these load variations lead to changes in frequency of the power system.
Isemin, U. I., Onah , A. J.
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Provision of Load Frequency Control by PHEVs, Controllable Loads, and a Cogeneration Unit

IEEE Transactions on Industrial Electronics, 2011
This paper presents a method for tracking a secondary frequency control (Load Frequency Control) signal by groups of plug-in hybrid electric vehicles (PHEVs), controllable thermal household appliances under a duty-cycle coordination scheme, and a decentralized combined-heat-and-power generation unit.
Matthias D. Galus   +2 more
openaire   +1 more source

Digital Load Frequency Control

2020 6th IEEE International Energy Conference (ENERGYCon), 2020
Frequency of power supply system needs to be kept constant or fixed irrespective of the varying changes in load demand in order to ensure the well-being of power generating equipment and delivery of good quality power at the demand side. This paper presents an enhanced digital PD controller for Load Frequency Control (LFC) of UAE power system based on ...
Mekonnen Shewarega, Abdulla Ismail
openaire   +1 more source

Load-frequency control service in a deregulated environment

Decision Support Systems, 1999
In a deregulated environment, independent generators and utility generators may or may not participate in the load frequency control of the system. For the purpose of evaluating the performance of such a system, a flexible method has been developed and implemented.
A. P. Sakis Meliopoulos   +2 more
openaire   +1 more source

Constrained Load-frequency Control

Electric Power Components and Systems, 2008
Abstract Load-frequency control (LFC) is one of the major problems when dealing with the design and/or operation of electric power systems. Moreover, due to practical and physical considerations, bounds are often imposed on the level of control signals as well as the maximum frequency deviation. Control strategies that satisfy systems constraints, and,
M. F. Hassan   +2 more
openaire   +1 more source

Advanced Load Frequency Control

IEEE Transactions on Power Apparatus and Systems, 1972
The problem of designing a load frequency control law which reduces transient frequency oscillations (swings) and reduces the number of control signals sent to power houses is investigated. A linear model of an area of an interconnected power system is developed, and a discrete time, linear-plus-deadband, feedback control law is designed.
J. Glover, Fred Schweppe
openaire   +1 more source

Decentralised load-frequency control

IEE Proceedings D Control Theory and Applications, 1985
Consider an LQ problem: \(\min_{K\in \Omega}J(K)\) subject to \(\dot x=Ax+Bu\), \(y=Cx\), where \(J(K)=0.5\int^{\infty}_{0}x'(Q+K'RK)xdt\), \(\Omega =\{K:\) \(F(K)=0\}\); \(F(K)=K(I-C'(CC')^{-1}C)\), \(F(K)=K- diag\{K_ 1,...,K_ M\}\) for output, decentralised (with M local agents) feedback control, respectively. Two theorems are proved: Suppose \(K+L=R^
Geromel, J. C., Peres, P. L. D.
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On Load Frequency Control

INFOR: Information Systems and Operational Research, 1991
AbstractThis paper addresses the design of decentralized controllers for interconnected large-scale electric power systems. The system is modelled as a collection of independent subsystems or control areas interconnected through high voltage tie-lines.
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An Adaptive Controller for Power System Load-Frequency Control

IEEE Power Engineering Review, 1989
An adaptive controller is presented for load-frequency control of power systems. It uses a PI (proportional-integral) adaptation to satisfy the hyperstability condition for taking care of the parameter changes of the system. Only the available information on the states and output are required for the control.
C.-T. Pan, C.-M. Liaw
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