Transmitted power limit of controlled high voltage transmission line for modes on steady-state stability boundary

V. Golov, D. Kormilitsyn, O. Sukhanova
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Abstract

The use of series compensation devices is one of the methods to increase the capacity of a power transmission line. In addition, the use of controlled series compensation devices affects the steady-state stability of the electric power system. It is also widely known that automatic excitation control of generators has a positive effect on the stability of the system. Thus, it is reasonable to analyze the influence of the adjustable parameters of the controlled series compensation device on the line capacity when considering modes at the boundaries of the stability regions, taking into account automatic excitation controllers on synchronous generators of the power plant. Methods of mathematical modeling of the electric power system, the theory of long-distance power lines and electromechanical transients, methods of analyzing the stability of electric power systems are used. The original software in the C ++ programming language is used as a modeling tool. The authors have selected the regulation laws parameters of controlled series compensation device and automatic excitation controller, provided that steady-state stability is maintained. The stability regions of the electric power-engineering system under study are constructed depending on the tuning parameters of the considered devices. A technique is proposed to select the coefficients of complex regulation of the devices to increase the capacity of a high-voltage power transmission line. The proposed method of the complex selection of regulation coefficients of controlled devices provides the possibility of obtaining their optimal values in a controlled electric power system to ensure stability.
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受控高压输电线路在稳态稳定边界上模式的传输功率极限
采用串联补偿装置是提高输电线路容量的方法之一。此外,控制串联补偿装置的使用会影响电力系统的稳态稳定性。发电机的自动励磁控制对系统的稳定性有积极的作用,这也是众所周知的。因此,考虑稳定区边界处的模式,同时考虑电厂同步发电机的自动励磁控制器,分析被控串联补偿装置的可调参数对线路容量的影响是合理的。运用了电力系统数学建模的方法、远距离电力线路和机电暂态理论、电力系统稳定性分析的方法。原始软件采用c++编程语言作为建模工具。在保证系统稳态稳定的前提下,选取了可控串联补偿装置和自动励磁控制器的调节规律参数。所研究的电力工程系统的稳定区域取决于所考虑的设备的调谐参数。为了提高高压输电线路的容量,提出了一种选择器件复调节系数的方法。所提出的被控装置调节系数的复杂选择方法,提供了在被控电力系统中获得其最优值以保证稳定的可能性。
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