STUDY OF TRANSIENT AND STATIONARY OPERATION MODES OF SYNCHRONOUS SYSTEM CONSISTING IN TWO MACHINES

Author:

Safaryan V. S.

Abstract

The solution of the problem of reliable functioning of an electric power system (EPS) in steady-state and transient regimes, prevention of EPS transition into asynchronous regime, maintenance and restoration of stability of post-emergency processes is based on formation and realization of mathematical models of an EPS processes. During the functioning of electric power system in asynchronous regime, besides the main frequencies, the currents and voltages include harmonic components, the frequencies of which are multiple of the difference of main frequencies. At the two-frequency asynchronous regime the electric power system is being made equivalent in a form of a two-machine system, functioning for a generalized load. In the article mathematical models of transient process of a two-machine system in natural form and in dcoordinate system are presented. The mathematical model of two-machine system is considered in case of two windings of excitement at the rotors. Also, in the article varieties of mathematical models of EPS transient regimes (trivial, simple, complete) are presented. Transient process of a synchronous two-machine system is described by the complete model. The quality of transient processes of a synchronous machine depends on the number of rotor excitation windings. When there are two excitation windings on the rotor (dual system of excitation), the mathematical model of electromagnetic transient processes of a synchronous machine is represented in a complex form, i.e. in coordinate system dq, the current of rotor being represented by a generalized vector. In asynchronous operation of a synchronous two-machine system with two excitation windings on the rotor the current and voltage systems include only harmonics of two frequencies. The mathematical model of synchronous steady-state process of a two-machine system is also provided, and the steady-state regimes with different structures of initial information are considered.

Publisher

Belarusian National Technical University

Subject

Energy Engineering and Power Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment

Reference10 articles.

1. Narovlyansky V. G. (2004) Modern Methods and Means of Prevention of Asynchronous Operation of the Power Grid. Moscow, Energoatomizdat Publ. 360 (in Russian).

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3. Gorev A. A. (1960) Transients of the Synchronous Machine. Moscow, Gosenergoizdat. 551 (in Russian).

4. Areshian G. L. (1999) Special Issues of Theory of Alternating Current Electric Machines. Yerevan. 300 (in Russian).

5. Narovlyansky V. G., Nalyevin A. A. (2005) Method of Determining Equivalent Parameters of the Equivalent Circuit of the Power Grid in Asynchronous Mode. Elektrichestvo [Electricity], (8), 15–21 (in Russian).

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