Review on automatic generation control strategies for stabilising the frequency deviations in multi-area power system
暂无分享,去创建一个
Mohd Rusllim Mohamed | P. Srinivasarao | K. Peddakapu | M. R. Mohamed | Arigela Satya Veerendra | A. S. Veerendra | D. J. K. Kishore | Puiki Leung | K. Peddakapu | D. Kishore | P. Srinivasarao | P. Leung
[1] R. D. Christie,et al. Load frequency control issues in power system operations after deregulation , 1995 .
[2] K. R. Subhashini,et al. Pathfinder algorithm optimized fractional order tilt-integral-derivative (FOTID) controller for automatic generation control of multi-source power system , 2020, Microsystem Technologies.
[3] J. S. Kumar,et al. A hybrid MFO‐GHNN tuned self‐adaptive FOPID controller for ALFC of renewable energy integrated hybrid power system , 2021, IET Renewable Power Generation.
[4] C. Concordia,et al. Tie-Line Power and Frequency Control of Electric Power Systems [includes discussion] , 1953, Transactions of the American Institute of Electrical Engineers. Part III: Power Apparatus and Systems.
[5] Rabindra Kumar Sahu,et al. A novel hybrid DEPS optimized fuzzy PI/PID controller for load frequency control of multi-area interconnected power systems , 2014 .
[6] A. Bensenouci,et al. Mixed H∞/H2 with pole-placement design of robust LMI-based output feedback controllers for multi-area load frequency control , 2007, EUROCON 2007 - The International Conference on "Computer as a Tool".
[7] Lingfeng Wang,et al. Non-Cooperative Decentralized Charging of Homogeneous Households' Batteries in a Smart Grid , 2014, IEEE Transactions on Smart Grid.
[8] Akash Singh,et al. Automatic Generation Control of an Interconnected Power System Before and After Deregulation , 2013 .
[9] Bruno Francois,et al. Energy Management and Operational Planning of a Microgrid With a PV-Based Active Generator for Smart Grid Applications , 2011, IEEE Transactions on Industrial Electronics.
[10] H. Shayeghi,et al. Application of ANN technique based on μ-synthesis to load frequency control of interconnected power system , 2006 .
[11] Aysen Demiroren,et al. GA application to optimization of AGC in three-area power system after deregulation , 2007 .
[12] Jawad Talaq,et al. Adaptive fuzzy gain scheduling for load frequency control , 1999 .
[13] C. W. Ross,et al. Dynamic Performance Evaluation of a Computer Controlled Electric Power System , 1972 .
[14] Loi Lei Lai,et al. GA optimized PID controllers for automatic generation control of two area reheat thermal systems under deregulated environment , 2008, 2008 Third International Conference on Electric Utility Deregulation and Restructuring and Power Technologies.
[15] S. Dechanupaprittha,et al. Robust decentralised frequency stabilisers design of static synchronous series compensators by taking system uncertainties into consideration , 2006 .
[16] Sanjoy Debbarma,et al. Utilizing Electric Vehicles for LFC in Restructured Power Systems Using Fractional Order Controller , 2017, IEEE Transactions on Smart Grid.
[17] Ahmed Rubaai,et al. Self-tuning load frequency control: multilevel adaptive approach , 1994 .
[18] Sidhartha Panda,et al. A hybrid BFOA–MOL approach for FACTS-based damping controller design using modified local input signal , 2015 .
[19] Kanendra Naidu,et al. Multiobjective optimization using weighted sum Artificial Bee Colony algorithm for Load Frequency Control , 2014 .
[20] Yasunori Mitani,et al. Robust decentralized AGC in a restructured power system , 2004 .
[21] Hieu Trinh,et al. Load-frequency control of interconnected power systems via constrained feedback control schemes , 1994 .
[22] Ch. Naga Sai Kalyan,et al. Stabilizing Frequency and Voltage in Combined LFC and AVR System with Coordinated Performance of SMES and TCSC , 2020 .
[23] P. Srinivasarao,et al. Performance analysis of distributed power flow controller with ultra-capacitor for regulating the frequency deviations in restructured power system , 2020, Journal of Energy Storage.
[24] K. Tomsovic,et al. Application of linear matrix inequalities for load frequency control with communication delays , 2004, IEEE Transactions on Power Systems.
[25] Banaja Mohanty,et al. TLBO optimized sliding mode controller for multi-area multi-source nonlinear interconnected AGC system , 2015 .
[26] Yajvender Pal Verma,et al. Congestion management solution under secure bilateral transactions in hybrid electricity market for hydro-thermal combination , 2015 .
[27] Xiaoming Huang,et al. Adaptive distributed auction-based algorithm for optimal mileage based AGC dispatch with high participation of renewable energy , 2021 .
[28] Gulshan Sharma,et al. Cascade‐I λ D μ N controller design for AGC of thermal and hydro‐thermal power systems integrated with renewable energy sources , 2021, IET Renewable Power Generation.
[29] M. A. Sheirah,et al. Improved load-frequency self-tuning regulator , 1984 .
[30] N. V. Ramana,et al. Design of optimal sliding mode controller for load frequency control in multi-area deregulated thermal system , 2012, 2012 International Conference on Emerging Trends in Electrical Engineering and Energy Management (ICETEEEM).
[31] Emre Çelik,et al. Design of new fractional order PI–fractional order PD cascade controller through dragonfly search algorithm for advanced load frequency control of power systems , 2020, Soft Computing.
[32] Haluk Gozde,et al. Comparative performance analysis of Artificial Bee Colony algorithm in automatic generation control for interconnected reheat thermal power system , 2012 .
[33] Lalit Chandra Saikia,et al. Automatic generation control of a multi-area ST – Thermal power system using Grey Wolf Optimizer algorithm based classical controllers , 2015 .
[34] A. David,et al. Security-based rescheduling of transactions in a deregulated power system , 1999 .
[35] Antonio F. Gómez-Skarmeta,et al. About the use of fuzzy clustering techniques for fuzzy model identification , 1999, Fuzzy Sets Syst..
[36] Nand Kishor,et al. A literature survey on load–frequency control for conventional and distribution generation power systems , 2013 .
[37] Mohamed I. Mosaad,et al. LFC based adaptive PID controller using ANN and ANFIS techniques , 2014 .
[38] Yasunori Mitani,et al. Intelligent Frequency Control in an AC Microgrid: Online PSO-Based Fuzzy Tuning Approach , 2012, IEEE Transactions on Smart Grid.
[39] Mohan Muniappan. A comprehensive review of DC fault protection methods in HVDC transmission systems , 2021 .
[40] Ali Mosallanejad,et al. Neoteric HANFISC–SSSC based on MOPSO technique aimed at oscillation suppression of interconnected multi-source power systems , 2016 .
[41] Sidhartha Panda,et al. Automatic generation control of multi-area power system using multi-objective non-dominated sorting genetic algorithm-II , 2013 .
[42] J. Wen,et al. Delay-dependent stability for load frequency control with constant and time-varying delays , 2009, 2009 IEEE Power & Energy Society General Meeting.
[43] N. Kamaraj,et al. Hybrid Neuro Fuzzy approach for automatic generation control in restructured power system , 2016 .
[44] K.R.M. Vijaya Chandrakala,et al. Variable structure fuzzy gain scheduling based load frequency controller for multi source multi area hydro thermal system , 2013 .
[45] Prakash Kumar Hota,et al. Controller parameters tuning of differential evolution algorithm and its application to load frequency control of multi-source power system , 2014 .
[46] S. Tsuji-Iio,et al. Flexible Power Interconnection With SMES , 2006, IEEE Transactions on Applied Superconductivity.
[47] Mehrdad Tarafdar Hagh,et al. Coordination of heat pumps, electric vehicles and AGC for efficient LFC in a smart hybrid power system via SCA-based optimized FOPID controllers , 2018 .
[48] T. Funabashi,et al. A minimal-order observer based coordinated control method for isolated power utility connected multiple PV systems to reduce frequency deviations , 2008, 2008 IEEE 2nd International Power and Energy Conference.
[49] Ashwani Kumar,et al. Load frequency control in deregulated power system with wind integrated system using fuzzy controller , 2013 .
[50] Dennice F. Gayme,et al. Grid-scale energy storage applications in renewable energy integration: A survey , 2014 .
[51] Ajit Kumar Barisal,et al. Comparative performance analysis of teaching learning based optimization for automatic load frequency control of multi-source power systems , 2015 .
[52] Milan S. Calovic,et al. Automatic generation control: Decentralized area-wise optimal solution , 1984 .
[53] Ismi Rosyiana Fitri,et al. High-Gain Disturbance Observer-Based Robust Load Frequency Control of Power Systems with Multiple Areas , 2017 .
[54] Lalit Chandra Saikia,et al. AGC of a multi-area thermal system under deregulated environment using a non-integer controller , 2013 .
[55] Rahmat-Allah Hooshmand,et al. A NEW PID CONTROLLER DESIGN FOR AUTOMATIC GENERATION CONTROL OF HYDRO POWER SYSTEMS , 2010 .
[56] Zakariya Al-Hamouz,et al. Optimal design of a sliding mode AGC controller: Application to a nonlinear interconnected model , 2011 .
[57] F. Torelli,et al. Load Following Control Schemes for Deregulated Energy Markets , 2006, IEEE Transactions on Power Systems.
[58] Rainer Storn,et al. Differential Evolution – A Simple and Efficient Heuristic for global Optimization over Continuous Spaces , 1997, J. Glob. Optim..
[59] Aleksandar M. Stankovic,et al. On robust control analysis and design for load frequency regulation , 1998 .
[60] Bogdan Marinescu,et al. Multivariable control with grid objectives of an HVDC link embedded in a large-scale AC grid , 2015 .
[61] M. L. Kothari,et al. Discrete-Mode Automatic Generation Control of a Two-Area Reheat Thermal System with New Area Control Error , 1989, IEEE Power Engineering Review.
[62] E. S. Ali,et al. Bacteria foraging optimization algorithm based load frequency controller for interconnected power system , 2011 .
[63] David J. Murray-Smith,et al. Combination of data sets for system identification , 1993 .
[64] Nathan Cohn,et al. Some Aspects of Tie-Line Bias Control on Interconnected Power Systems [includes discussion] , 1956, Transactions of the American Institute of Electrical Engineers. Part III: Power Apparatus and Systems.
[65] Lalit Chandra Saikia,et al. Automatic generation control of multi area thermal system using Bat algorithm optimized PD–PID cascade controller , 2015 .
[66] Goshaidas Ray,et al. A new approach to the design of robust load-frequency controller for large scale power systems , 1999 .
[67] Xin-She Yang,et al. Firefly Algorithms for Multimodal Optimization , 2009, SAGA.
[68] Wayne R. Barcelo. Effect of Power Plant Response on Optimum Load Frequency Control System Design , 1973 .
[69] A. Kaddouri,et al. An adaptive fuzzy controller gain scheduling for power system load-frequency control , 2004, 2004 IEEE International Conference on Industrial Technology, 2004. IEEE ICIT '04..
[70] Yukio Yoshida,et al. Study of the Effect of the DC Link on Frequency Control in Interconnected AC Systems , 1969 .
[71] Rajesh Joseph Abraham,et al. Load following in a deregulated power system with Thyristor Controlled Series Compensator , 2015 .
[72] R. Kulessky,et al. Identification-based power unit model for load-frequency control purposes , 2000 .
[73] Mehrdad Tarafdar Hagh,et al. Effective oscillation damping of an interconnected multi-source power system with automatic generation control and TCSC , 2015 .
[74] Amir H. Gandomi,et al. A hybrid evolutionary algorithm for stability analysis of 2-area multi-non-conventional system with communication delay and energy storage , 2021 .
[75] Haluk Gozde,et al. Automatic generation control application with craziness based particle swarm optimization in a thermal power system , 2011 .
[76] S. Panda,et al. Grasshopper optimization algorithm optimized multistage controller for automatic generation control of a power system with FACTS devices , 2021 .
[77] Bernard Widrow,et al. Application of neural networks to load-frequency control in power systems , 1994, Neural Networks.
[78] Lalit Chandra Saikia,et al. Maiden application of hybrid pattern search-biogeography based optimisation technique in automatic generation control of a multi-area system incorporating interline power flow controller , 2016 .
[79] Chandan Kumar Shiva,et al. Design and analysis of multi-source multi-area deregulated power system for automatic generation control using quasi-oppositional harmony search algorithm , 2016 .
[80] Hasmat Malik,et al. Renewable generation based hybrid power system control using fractional order-fuzzy controller , 2021 .
[81] E. S. Ali,et al. BFOA based design of PID controller for two area Load Frequency Control with nonlinearities , 2013 .
[82] Swagat Pati,et al. Hybrid differential evolution particle swarm optimisation optimised fuzzy proportional–integral derivative controller for automatic generation control of interconnected power system , 2014 .
[83] Y. L. Abdel-Magid,et al. Genetic algorithms applications in load frequency control , 1995 .
[84] Vivekananda Mukherjee,et al. Automatic generation control of interconnected power system for robust decentralized random load disturbances using a novel quasi-oppositional harmony search algorithm , 2015 .
[85] Sidhartha Panda,et al. Modified Salp Swarm Algorithm-Optimized Fractional-Order Adaptive Fuzzy PID Controller for Frequency Regulation of Hybrid Power System with Electric Vehicle , 2021, Journal of Control, Automation and Electrical Systems.
[86] J. Nanda,et al. Automatic generation control of an interconnected hydrothermal system in continuous and discrete modes considering generation rate constraints , 1983 .
[87] S. K. Sinha,et al. Intelligent PI control technique in four area Load Frequency Control of interconnected hydro-thermal power system , 2012, 2012 International Conference on Computing, Electronics and Electrical Technologies (ICCEET).
[88] Sidhartha Panda,et al. Salp Swarm Optimized PID Controller for Frequency Control of Hybrid Power System with UC and UPFC , 2021 .
[89] Rabindra Kumar Sahu,et al. Automatic generation control with thyristor controlled series compensator including superconducting magnetic energy storage units , 2014 .
[90] Judith B. Cardell,et al. Market Integration of Distributed Resources Through Coordinated Frequency and Price Droop , 2014, IEEE Transactions on Smart Grid.
[91] P. H. Ashmole,et al. Power-system model for large frequency disturbances , 1974 .
[92] A. Khodabakhshian,et al. Robust load frequency controller design for hydro power systems , 2005, Proceedings of 2005 IEEE Conference on Control Applications, 2005. CCA 2005..
[93] R. R. Shoults,et al. Multi-area adaptive LFC developed for a comprehensive AGC simulator , 1993 .
[94] Krishan Arora,et al. Automatic Generation Control for Interconnected Hydro-thermal System with the help of Conventional Controllers , 2012 .
[95] S. C. Tripathy,et al. Application of magnetic energy storage unit as load-frequency stabilizer , 1990 .
[96] Rabindra Kumar Sahu,et al. DE optimized parallel 2-DOF PID controller for load frequency control of power system with governor dead-band nonlinearity , 2013 .
[97] Taisuke Masuta,et al. Supplementary Load Frequency Control by Use of a Number of Both Electric Vehicles and Heat Pump Water Heaters , 2012, IEEE Transactions on Smart Grid.
[98] Dipayan Guha,et al. Load frequency control of interconnected power system using grey wolf optimization , 2016, Swarm Evol. Comput..
[99] Ameena Saad Al-Sumaiti,et al. Marine predators algorithm for parameters estimation of photovoltaic modules considering various weather conditions , 2021, Neural Computing and Applications.
[100] L. Wozniak,et al. Hydrogenerator system identification using a simple genetic algorithm , 1997 .
[101] Amin Khodabakhshian,et al. A new robust PID load frequency controller , 2008 .
[102] Mohamed Zribi,et al. Adaptive decentralized load frequency control of multi-area power systems , 2005 .
[103] Proportional–integral/proportional–integral-derivative tuning procedure of a single-phase shunt active power filter using Bode diagram , 2014 .
[104] Naresh Kumari,et al. Particle Swarm Optimization and Gradient Descent Methods for Optimization of PI Controller for AGC of Multi-area Thermal-Wind-Hydro Power Plants , 2013, 2013 UKSim 15th International Conference on Computer Modelling and Simulation.
[105] Yogendra Arya,et al. Automatic generation control of two-area electrical power systems via optimal fuzzy classical controller , 2018, J. Frankl. Inst..
[106] H. Shayeghi,et al. Multi-stage fuzzy PID power system automatic generation controller in deregulated environments , 2006 .
[107] Devendra K. Chaturvedi,et al. Load frequency control: a generalised neural network approach , 1999 .
[108] Olimpo Anaya-Lara,et al. Contribution of DFIG-based wind farms to power system short-term frequency regulation , 2006 .
[109] Atef Aly El-Emary,et al. APPLICATION OF STATIC VAR COMPENSATION FOR LOAD FREQUENCY CONTROL , 1997 .
[110] Yannis L. Karnavas,et al. AGC for autonomous power system using combined intelligent techniques , 2002 .
[111] Yogendra Arya,et al. A novel CFFOPI-FOPID controller for AGC performance enhancement of single and multi-area electric power systems. , 2019, ISA transactions.
[112] Ali Mohammad Ranjbar,et al. Supervisory predictive control of power system load frequency control , 2014 .
[113] S Palaniswami,et al. ANFIS based Neuro-Fuzzy Controller in LFC of Wind- Micro Hydro-Diesel Hybrid Power System , 2012 .
[114] S. Velusami,et al. Design of observer-based decentralized load-frequency controllers for interconnected power systems , 1997 .
[115] Mahmoud Moghavvemi,et al. Current state of neural networks applications in power system monitoring and control , 2013 .
[116] Panos M. Pardalos,et al. An adaptive fuzzy controller based on harmony search and its application to power plant control , 2013 .
[117] Ziad M. Ali,et al. Design of controllers for automatic frequency control of different interconnection structures composing of hybrid generator units using the chaotic optimization approach , 2021, International Journal of Electrical Power & Energy Systems.
[118] Arman Oshnoei,et al. Model Predictive-Based Secondary Frequency Control Considering Heat Pump Water Heaters , 2019 .
[119] T.S. Bhatti,et al. Load Frequency Control of an Isolated Small-Hydro Power Plant With Reduced Dump Load , 2006, IEEE Transactions on Power Systems.
[120] Sakti Prasad Ghoshal,et al. Comparative performance evaluation of SMES–SMES, TCPS–SMES and SSSC–SMES controllers in automatic generation control for a two-area hydro–hydro system , 2011 .
[121] Nilanjan Dey,et al. Artificial Intelligence in Performance Analysis of Load Frequency Control in Thermal-Wind-Hydro Power Systems , 2015 .
[122] K. R. Sudha,et al. Load Frequency Control of an Interconnected Reheat Thermal system using Type-2 fuzzy system including SMES units , 2012 .
[123] Somanath Majhi,et al. LFC of an interconnected power system with multi-source power generation in deregulated power environment , 2014 .
[124] Rabindra Kumar Sahu,et al. Load frequency control with fuzzy-PID controller under restructured environment , 2014, 2014 International Conference on Control, Instrumentation, Communication and Computational Technologies (ICCICCT).
[125] Tarek Hassan Mohamed,et al. Decentralized model predictive based load frequency control in an interconnected power system , 2011 .
[126] Chul-Hwan Kim,et al. A Frequency-Control Approach by Photovoltaic Generator in a PV–Diesel Hybrid Power System , 2011, IEEE Transactions on Energy Conversion.
[127] Issarachai Ngamroo,et al. Design of Optimal Fuzzy Logic based PI Controller using Multiple Tabu Search Algorithm for Load Frequency Control , 2006 .
[128] Narendra Kumar,et al. AGC of a multi-area multi-source hydrothermal power system interconnected via AC/DC parallel links under deregulated environment , 2016 .
[129] Anna Pinnarelli,et al. Using a FACTS device controlled by a decentralised control law to damp the transient frequency deviation in a deregulated electric power system , 2004 .
[130] Ali Mohammad Ranjbar,et al. Robust analysis and design of power system load frequency control using the Kharitonov's theorem , 2014 .
[131] Ertuğrul Çam,et al. Fuzzy logic controller in interconnected electrical power systems for load-frequency control , 2005 .
[132] Sidhartha Panda,et al. Hybrid BFOA-PSO algorithm for automatic generation control of linear and nonlinear interconnected power systems , 2013, Appl. Soft Comput..
[133] Alireza Yazdizadeh,et al. Decentralized load frequency control using a new robust optimal MISO PID controller , 2012 .
[134] C. M. Liaw,et al. Design of a reduced-order adaptive load-frequency controller for an interconnected hydrothermal power system , 1994 .
[135] H. Shayeghi,et al. Multi-stage fuzzy load frequency control using PSO , 2008 .
[136] W. C. Chan,et al. Multilevel load-frequency control of interconnected power systems , 1978 .
[137] G. Sakthivel,et al. DOE study of ‘the effect of various parameters on fuel tank sloshing using multiphase CFD’ , 2018 .
[138] Paul M. Julich,et al. Optimal control of interconnected, electric energy systems—A new formulation , 1972 .
[139] Lalit Chandra Saikia,et al. Flower Pollination Algorithm Optimized PI-PD Cascade Controller in Automatic Generation Control of a Multi-area Power System , 2016 .
[140] Rabindra Kumar Sahu,et al. A novel hybrid PSO-PS optimized fuzzy PI controller for AGC in multi area interconnected power systems , 2015 .
[141] Zaheeruddin,et al. Enhancement of frequency regulation in tidal turbine power plant using virtual inertia from capacitive energy storage system , 2021 .
[142] S. C. Tripathy,et al. Improved load-frequency control with capacitive energy storage , 1997 .
[143] Kumars Rouzbehi,et al. A New Combined Model for Simulation of Mutual Effects between LFC and AVR Loops , 2009, 2009 Asia-Pacific Power and Energy Engineering Conference.
[144] T.E. Bechert,et al. Area automatic generation control by multi-pass dynamic programming , 1977, IEEE Transactions on Power Apparatus and Systems.
[145] Hieu Minh Trinh,et al. Load Frequency Control of Power Systems With Electric Vehicles and Diverse Transmission Links Using Distributed Functional Observers , 2016, IEEE Transactions on Smart Grid.
[146] Ibraheem,et al. Recent philosophies of automatic generation control strategies in power systems , 2005, IEEE Transactions on Power Systems.
[147] Arash Etemadi,et al. Adaptive neuro-fuzzy inference system based automatic generation control , 2008 .
[148] Sidhartha Panda,et al. Simulation study for automatic generation control of a multi-area power system by ANFIS approach , 2012, Appl. Soft Comput..
[149] Ali Mohammad Ranjbar,et al. Robust multivariable predictive based load frequency control considering generation rate constraint , 2013 .
[150] A. Bensenouci,et al. Step-Wise Optimum Adaptive Variable-Structure Load-Frequency Control Design Using Simulated Annealing , 2007, 2007 IEEE International Symposium on Industrial Electronics.
[151] Geoffrey Eappen,et al. Coordination control scheme by SSSC and TCPS with redox flow battery for optimized automatic generation control , 2013, 2013 International Conference on Renewable Energy and Sustainable Energy (ICRESE).
[152] G. L. Kusic,et al. Automatic generation control for hydro systems , 1988 .
[153] Lei Xi,et al. A novel multi-agent decentralized win or learn fast policy hill-climbing with eligibility trace algorithm for smart generation control of interconnected complex power grids☆ , 2015 .
[154] Sharon Pande,et al. Human Resource Information Systems: A Review in the Adoption of Open Source , 2013 .
[155] Ahmed M. Gaouda. Power system disturbance modeling under deregulated environment , 2007, J. Frankl. Inst..
[156] Issarachai Ngamroo,et al. Robust LFC in a Smart Grid With Wind Power Penetration by Coordinated V2G Control and Frequency Controller , 2014, IEEE Transactions on Smart Grid.
[157] Rabindra Kumar Sahu,et al. Load frequency control of power system under deregulated environment using optimal firefly algorithm , 2016 .
[158] Fushuan Wen,et al. LOAD FREQUENCY CONTROL USING GENETIC-ALGORITHM BASED FUZZY GAIN SCHEDULING OF PI CONTROLLERS , 1998 .
[159] Seyyed Mostafa Nosratabadi,et al. A new coordination strategy of SSSC and PSS controllers in power system using SOA algorithm based on Pareto method , 2015 .
[160] Nand Kishor,et al. Proportional–integral controller based small-signal analysis of hybrid distributed generation systems , 2011 .
[161] Daniel Tylavsky,et al. Efficient Market Design and Public Goods, Part I: Economic Models , 2010 .
[162] Nilanjan Dey,et al. Application of flower pollination algorithm in load frequency control of multi-area interconnected power system with nonlinearity , 2017, Neural Computing and Applications.
[163] R. Verma,et al. Intelligent Automatic Generation Control of Two-Area Hydrothermal Power System Using ANN and Fuzzy Logic , 2013, 2013 International Conference on Communication Systems and Network Technologies.
[164] Mohammad Bagher Menhaj,et al. Robust nonlinear model predictive control for a PWR nuclear power plant , 2012 .
[165] H. Bevrani,et al. On Load–Frequency Regulation With Time Delays: Design and Real-Time Implementation , 2009, IEEE Transactions on Energy Conversion.
[166] Duncan S. Callaway. Tapping the energy storage potential in electric loads to deliver load following and regulation, with application to wind energy , 2009 .
[167] J. Nanda,et al. Some new findings on automatic generation control of an interconnected hydrothermal system with conventional controllers , 2006, IEEE Transactions on Energy Conversion.
[168] Mei Yu,et al. Decentralized load frequency control in deregulated environments , 2012 .
[169] Abolfazl Jalilvand,et al. A power control strategy to improve power system stability in the presence of wind farms using FACTS devices and predictive control , 2017 .
[170] R. Takahashi,et al. Robust Stabilizing Controllers to Automatic Generation Control for Load Frequency Control Application , 2010 .
[171] Somanath Majhi,et al. A new control scheme for PID load frequency controller of single-area and multi-area power systems. , 2013, ISA transactions.
[172] J.A.P. Lopes,et al. Optimum generation control in wind parks when carrying out system operator requests , 2006, IEEE Transactions on Power Systems.
[173] G. Shirai. Load frequency sampled-data control via Lyapunov's second method , 1981, Proceedings of the IEEE.
[174] S. M. Shahidehpour,et al. Transaction analysis in deregulated power systems using game theory , 1997 .
[175] M. Tripathy,et al. Design of an optimal SMES for automatic generation control of two-area thermal power system using Cuckoo search algorithm , 2015 .
[176] K. R. Sudha,et al. Robust decentralized load frequency control of interconnected power system with Generation Rate Constraint using Type-2 fuzzy approach , 2011 .
[177] Om P. Malik,et al. Robust decentralized neural networks based LFC in a deregulated power system , 2007 .
[178] Kalyan Chatterjee,et al. A comprehensive state of the art literature survey on LFC mechanism for power system , 2017 .
[179] Chandan Kumar Shiva,et al. A novel quasi-oppositional harmony search algorithm for AGC optimization of three-area multi-unit power system after deregulation , 2016 .
[180] B. Francois,et al. Dynamic Frequency Control Support by Energy Storage to Reduce the Impact of Wind and Solar Generation on Isolated Power System's Inertia , 2012, IEEE Transactions on Sustainable Energy.
[181] Sakti Prasad Ghoshal,et al. Application of GA based optimal integral gains in fuzzy based active power-frequency control of non-reheat and reheat thermal generating systems , 2003 .
[182] Om P. Malik,et al. A load frequency control algorithm based on a generalized approach , 1988 .
[183] S. P. Ghoshal,et al. Application of GA/GA-SA based fuzzy automatic generation control of a multi-area thermal generating system , 2004 .
[184] I. A. Chidambaram,et al. PI2 controller based coordinated control with Redox Flow Battery and Unified Power Flow Controller for improved Restoration Indices in a deregulated power system , 2016 .
[185] J. Nanda,et al. Application of optimal control strategy to automatic generation control of a hydrothermal system , 1988 .
[186] Rabindra Kumar Sahu,et al. Design and analysis of differential evolution algorithm based automatic generation control for interconnected power system , 2013 .
[187] Taher Niknam,et al. A new intelligent online fuzzy tuning approach for multi-area load frequency control: Self Adaptive Modified Bat Algorithm , 2015 .
[188] Anjan Bose,et al. Regulation Error in Load Frequency Control , 1980, IEEE Transactions on Power Apparatus and Systems.
[189] R. N. Patel,et al. Application of AI supported optimal controller for automatic generation control of a restructured power system with parallel AC–DC tie lines , 2012 .
[190] Quanmin Zhu,et al. Decentralised load-frequency controller design based on structured singular values , 1998 .
[191] Kuljeet Kaur,et al. Coordinated Power Control of Electric Vehicles for Grid Frequency Support: MILP-Based Hierarchical Control Design , 2019, IEEE Transactions on Smart Grid.
[192] Wen Tan,et al. Unified Tuning of PID Load Frequency Controller for Power Systems via IMC , 2010, IEEE Transactions on Power Systems.
[193] Sakti Prasad Ghoshal,et al. Load frequency stabilization by coordinated control of Thyristor Controlled Phase Shifters and superconducting magnetic energy storage for three types of interconnected two-area power systems , 2010 .
[194] M. Deepak. Analysis of TCPS-SMES coordination in a multi area thermal system with Automatic Generation Control , 2014, 2014 International Conference on Circuits, Power and Computing Technologies [ICCPCT-2014].
[195] Nedjeljko Peric,et al. Optimal distribution of load-frequency control signal to hydro power plants , 2010, 2010 IEEE International Symposium on Industrial Electronics.
[196] Chandan Kumar Shiva,et al. Renewable Energy-Based Load Frequency Stabilization of Interconnected Power Systems Using Quasi-Oppositional Dragonfly Algorithm , 2020 .
[197] Kalyan Chatterjee,et al. Small-signal stability analysis for two-area interconnected power system with load frequency controller in coordination with FACTS and energy storage device , 2016 .
[198] Youyi Wang,et al. New robust adaptive load-frequency control with system parametric uncertainties , 1994 .
[199] Engin Yesil,et al. Self tuning fuzzy PID type load and frequency controller , 2004 .
[200] B. Hobbs,et al. Linear Complementarity Models of Nash-Cournot Competition in Bilateral and POOLCO Power Markets , 2001, IEEE Power Engineering Review.
[201] Lalit Chandra Saikia,et al. Application of hybrid crow-search with particle swarm optimization algorithm in AGC studies of multi-area systems , 2020 .
[202] Min Wu,et al. Delay-dependent robust load frequency control for time delay power systems , 2013, 2013 IEEE Power & Energy Society General Meeting.
[203] Aysen Demiroren,et al. The application of ANN technique to automatic generation control for multi-area power system , 2002 .
[204] Toshihisa Kadoya,et al. Study on load frequency control using redox flow batteries , 2004 .
[205] P. S. Nagendra Rao,et al. A reinforcement learning approach to automatic generation control , 2002 .
[206] Somanath Majhi,et al. Load frequency control of a realistic power system with multi-source power generation , 2012 .
[207] Fushuan Wen,et al. Determination of AGC capacity requirement and dispatch considering performance penalties , 2004 .
[208] Engin Yesil,et al. Interval type-2 fuzzy PID load frequency controller using Big Bang-Big Crunch optimization , 2014, Appl. Soft Comput..
[209] Seyed Abbas Taher,et al. Fractional order PID controller design for LFC in electric power systems using imperialist competitive algorithm , 2014 .
[210] Abdul Hanan Abdullah,et al. Short-term load forecasting using a hybrid model with a refined exponentially weighted fuzzy time series and an improved harmony search , 2014 .
[211] Yuan-Yih Hsu,et al. Optimal control of electric power generation using varible structure controllers , 1983 .
[212] P. Rodriguez,et al. Effect of VSC-HVDC on load frequency control in multi-area power system , 2012, 2012 IEEE Energy Conversion Congress and Exposition (ECCE).
[213] Binod Kumar Sahu,et al. A novel hybrid LUS–TLBO optimized fuzzy-PID controller for load frequency control of multi-source power system , 2016 .
[214] H. Shayeghi,et al. Load frequency control strategies: A state-of-the-art survey for the researcher , 2009 .
[215] Rahul Umrao,et al. Adaptive Polar Fuzzy logic based Load Frequency Controller , 2015 .
[216] Yuchun Hao,et al. Load frequency control in deregulated environments via active disturbance rejection , 2015 .
[217] Juan I. Pérez-Díaz,et al. Failures during Load-Frequency Control Maneuvers in an Upgraded Hydropower Plant: Causes, Identification of Causes and Solution Proposals , 2015 .
[218] László Keviczky,et al. Adaptive load-frequency control of the hungarian power system , 1985, Autom..
[219] Narayana Prasad Padhy,et al. Assessment for feasibility and pricing of wheeling transactions under deregulated environment of power industry , 2004 .
[220] Milan Calovic,et al. Linear Regulator Design for a Load and Frequency Control , 1972 .
[221] Banaja Mohanty,et al. WOA Optimized 2DOF TIDF Controller for Automatic Generation Control of Hydro-Thermal System , 2021 .
[222] Charles E. Fosha,et al. The Megawatt-Frequency Control Problem: A New Approach Via Optimal Control Theory , 1970 .
[223] Wen Tan,et al. Decentralized load frequency controller analysis and tuning for multi-area power systems , 2011 .
[224] M. Azzam,et al. Robust controller design for automatic generation control based on Q-parameterization , 2002 .
[225] Sidhartha Panda,et al. A modified moth flame optimisation technique tuned adaptive fuzzy logic PID controller for frequency regulation of an autonomous power system , 2020 .
[226] John Zaborszky,et al. A Reevaluation of the Normal Operating State Control of the Power System Using Computer Control and System Theory Part II: Dispatch Targeting , 1981, IEEE Transactions on Power Apparatus and Systems.
[227] Soteris A. Kalogirou,et al. Applications of artificial neural networks in energy systems , 1999 .
[228] Gulshan Sharma,et al. Optimal Automatic Generation Control of Asynchronous Power Systems Using Output Feedback Control Strategy with Dynamic Participation of Wind Turbines , 2015 .
[229] T. Taniguchi,et al. Optimal observer design for load-frequency control , 1986 .
[230] M. Prabavathi,et al. Energy bidding strategies for restructured electricity market , 2015 .
[231] R. Jayapal,et al. Design and comparison of I, PI, PID and Fuzzy logic controller on AGC deregulated power system with HVDC link , 2013, 2013 International conference on Circuits, Controls and Communications (CCUBE).
[232] Nedjeljko Perić,et al. Sliding mode based load-frequency control in power systems , 2010 .
[233] Sugandh P. Singh,et al. Analytic hierarchy process based automatic generation control of multi-area interconnected power system using Jaya algorithm , 2017, Eng. Appl. Artif. Intell..
[234] Zakariya Al-Hamouz,et al. A new load frequency variable structure controller using genetic algorithms , 2000 .
[235] Samir M. Miniesy,et al. Optimum Load-Frequency Sampled-Data Control with Randomly Varying System Disturbances , 1972 .
[236] Loi Lei Lai,et al. Power System Restructuring and Deregulation , 2001 .
[237] Le Xie,et al. Towards a Unified Operational Value Index of Energy Storage in Smart Grid Environment , 2012, IEEE Transactions on Smart Grid.
[238] Lalit Chandra Saikia,et al. Performance comparison of several classical controllers in AGC for multi-area interconnected thermal system , 2011 .
[239] H. Shayeghi,et al. Robust modified GA based multi-stage fuzzy LFC , 2007 .
[240] B. H. Bakken,et al. Automatic generation control in a deregulated power system , 1998 .
[241] Mohammad Teshnehlab,et al. Recurrent fuzzy neural network by using feedback error learning approaches for LFC in interconnected power system , 2009 .
[242] W. Mansour,et al. Bat inspired algorithm based optimal design of model predictive load frequency control , 2016 .
[243] Ashwani Kumar,et al. ATC with ZIP load model – A comprehensive evaluation with third generation FACTS in restructured electricity markets , 2014 .
[244] Fangxing Li,et al. Sensitivity analysis of load-damping, generator inertia and governor speed characteristics in hydraulic power system frequency regulation , 2014, 2014 Australasian Universities Power Engineering Conference (AUPEC).
[245] M. Mohamed Thameem Ansari,et al. Load frequency control using Bat inspired algorithm based dual mode gain scheduling of PI controllers for interconnected power system , 2015 .
[246] S. C. Tripathy,et al. Sampled data automatic generation control with superconducting magnetic energy storage in power systems , 1997 .
[247] Hassan Haes Alhelou,et al. Wind Driven Optimization Algorithm Application to Load Frequency Control in Interconnected Power Systems Considering GRC and GDB Nonlinearities , 2018 .
[248] Y. L. Abdel-Magid,et al. Optimal AGC tuning with genetic algorithms , 1996 .
[249] A. V. Jha,et al. Hybrid Gravitational–Firefly Algorithm-Based Load Frequency Control for Hydrothermal Two-Area System , 2021, Mathematics.
[250] Prabhat Kumar,et al. Sub-optimal automatic generation control of interconnected power system using constrained feedback control strategy , 2012 .
[251] Yajvender Pal Verma,et al. Evaluation of CES and DFIG unit in AGC of realistic multisource deregulated power system , 2017 .
[252] A. Feliachi. Optimal Decentralized Load Frequency Control , 1987, IEEE Power Engineering Review.
[253] Shengwei Wang,et al. Experimental study on the dynamics, quality and impacts of using variable-speed pumps in buildings for frequency regulation of smart power grids , 2020 .
[254] Nasser Hosseinzadeh,et al. Load Frequency Control of a Multi-Area Power System: An Adaptive Fuzzy Logic Approach , 2014, IEEE Transactions on Power Systems.
[255] Javad Sadeh,et al. Practical Viewpoints on Load Frequency Control Problem in a Deregulated Power System , 2010 .
[256] Sakti Prasad Ghoshal,et al. Optimized multi area AGC simulation in restructured power systems , 2010 .
[257] Amit Patra,et al. Automatic generation control of an interconnected hydrothermal power system considering superconducting magnetic energy storage , 2007 .
[258] J.A.M. Bleijs. Wind turbine dynamic response--difference between connection to large utility network and isolated diesel micro-grid , 2007 .
[259] Development of New Water Tree Suppressive XLPE Cable , 1986, IEEE Transactions on Power Delivery.
[260] Binod Kumar Sahu,et al. Implementation of hybrid SSA–SA based three‐degree‐of‐freedom fractional‐order PID controller for AGC of a two‐area power system integrated with small hydro plants , 2020, IET Generation, Transmission & Distribution.
[261] İlhan Kocaarslan,et al. Load frequency control in two area power systems using fuzzy logic controller , 2005 .
[262] Yusuf Oysal,et al. A comparative study of adaptive load frequency controller designs in a power system with dynamic neural network models , 2005 .
[263] Sanjib Kumar Panda,et al. A Plug and Play Operational Approach for Implementation of an Autonomous-Micro-Grid System , 2012, IEEE Transactions on Industrial Informatics.
[264] Y. Mitani,et al. Application of SMES coordinated with solid-state phase shifter to load frequency control , 1999, IEEE Transactions on Applied Superconductivity.
[265] Devendra K. Chaturvedi,et al. Short term load forecast using fuzzy logic and wavelet transform integrated generalized neural network , 2015 .