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Forced excitation control
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Some methods of study for automatically controlled electrical power system — (the use of digital computers for the choice of control in electrical power systems)
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N.D. Anisimova, V.A. Venikov, V.A. Stroev, V. A. Shtrobel, “Some methods of study for automatically controlled electrical power system — (the use of digital computers for the choice of control in electrical power systems),” Proc. PSCC, vol. I, June 1969, Rome.
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Power system stability as affected by automatic control of generators -some methods of analysis and synthesis
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Steady-state stability criterion based on the convergence of the iterative load flow calculations
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Digital computer solution of power flow problem
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Power apparatus and systems
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Methods of solution of general load flow equations for electrical system with the regard for steady-state characteristics of loads and generators as well as for automatic control of frequency, voltage and power
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L.A. Krumm, “Methods of solution of general load flow equations for electrical system with the regard for steady-state characteristics of loads and generators as well as for automatic control of frequency, voltage and power,” Proceedings of Tallinn polytechnical institute, N. 124, 1957.
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Power flow solution by Newton's method
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Cases of difficult convergence in load flow problem
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Experimental study of the convergence of complex electrical systems load flow calculations performed with the help of Newton's and parameter methods
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V.I. Idelchik, V.I. Tarasov, “Experimental study of the convergence of complex electrical systems load flow calculations performed with the help of Newton's and parameter methods,” Proceedings of Irkutsk polytechnical institute, N. 72, 1972.
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Advanced consecutive intervals method for the determination of electrical system load flow variations caused by any disturbances of symmetrical character with the regard for steady-state characteristics of loads and generations as well as for automatic control of frequency, voltage and power
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L.A. Krumm, “Advanced consecutive intervals method for the determination of electrical system load flow variations caused by any disturbances of symmetrical character with the regard for steady-state characteristics of loads and generations as well as for automatic control of frequency, voltage and power,” Proceedings of Tallinn polyteehnical institute, N. 125, 1957.
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Improved Newton's load flow through a minimization technique
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A.M. Sasson, C. Trevino, F. Aboytes, “Improved Newton's load flow through a minimization technique,” IEEE Transactions on power apparatus and system, vol. PAS-89, N. 5, 1971.
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Analysis of complex electrical power system steady-state stability with the help of digital computers
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V.A. Venikov, N.D. Anisimova, R. Michke, I.I.Shelukhina, “Analysis of complex electrical power system steady-state stability with the help of digital computers,” Electrichestvo, N. 11, 1967.
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