DocumentCode
1792999
Title
Automatic generation control in power plant using PID, PSS and Fuzzy-PID controller
Author
Satyanarayana, S. ; Sharma, Ratnesh K. ; Mukta ; Sappa, Anil Kumar
Author_Institution
EEE Dept., Lovely Prof. Univ., Phagwara, India
fYear
2014
fDate
19-20 Sept. 2014
Firstpage
1
Lastpage
8
Abstract
This paper is proposed to show the interaction between the LFC and the AVR loops in the Power Plant. The combinational effects of these two LFC and AVR loops are studied by extending the linear zed AGC system. A complete system model for LFC with Speed Governor, Turbine, Integral controller and Power System and AVR with Excitation System and PID controllers are described. LFC is for regulation of system frequency. It is also called a power factor control loop and influence the active power balances in the power system network. The LFC is achieved by the speed-governor mechanism. The basic principle of the speed-governor mechanism is to adjust itself as per the load variations. The voltage of the generator is proportional to the speed and excitation of the generator. If the speed is kept at constant, then the excitation system is used to control the voltage. The voltage control is also called as an excitation control system. This combined model is tested with conventional PID Controller, PID with Power System Stabilizer and Fuzzy-PID with Power System Stabilizer. The results are shown by using simulation; this will be reachable in dynamic and steady state responses.
Keywords
frequency control; fuzzy control; power factor; power plants; power system control; power system stability; three-term control; voltage control; voltage regulators; AVR loop; LFC loop; PSS; active power balance; automatic generation control; automatic voltage regulator loop; excitation control system; fuzzy-PID controller; linearized AGC system; load frequency control loop; load variation; power factor control loop; power plant; power system stabilizer; proportional integral differential control; speed-governor mechanism; system frequency regulation; turbine; voltage control; Automatic generation control; Damping; Frequency control; Power system stability; Reactive power; Turbines; Voltage control; Active power; automatic; controller; deviations; excitation; frequency; fuzzy; generation; generator; integral; load frequency control; power plant; primary control; reactive power; secondary control; speed governor; turbine and voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Smart Electric Grid (ISEG), 2014 International Conference on
Conference_Location
Guntur
Print_ISBN
978-1-4799-4104-9
Type
conf
DOI
10.1109/ISEG.2014.7005618
Filename
7005618
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