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Comparative Study of Popular Objective Functions for Damping Power System Oscillations in Multimachine System

机译:多机系统阻尼电力系统振荡常用目标函数的比较研究

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摘要

Power oscillation damping controller is designed in linearized model with heuristic optimization techniques. Selection of the objective function is very crucial for damping controller design by optimization algorithms. In this research, comparative analysis has been carried out to evaluate the effectiveness of popular objective functions used in power system oscillation damping. Two-stage lead-lag damping controller by means of power system stabilizers is optimized using differential search algorithm for different objective functions. Linearized model simulations are performed to compare the dominant mode's performance and then the nonlinear model is continued to evaluate the damping performance over power system oscillations. All the simulations are conducted in two-area four-machine power system to bring a detailed analysis. Investigated results proved that multiobjective D-shaped function is an effective objective function in terms of moving unstable and lightly damped electromechanical modes into stable region. Thus, D-shape function ultimately improves overall system damping and concurrently enhances power system reliability.
机译:采用启发式优化技术,在线性模型中设计了功率振荡阻尼控制器。目标函数的选择对于通过优化算法进行阻尼控制器设计至关重要。在这项研究中,已经进行了比较分析,以评估用于电力系统振荡阻尼的常用目标函数的有效性。针对不同的目标函数,使用差分搜索算法对通过电力系统稳定器的两级超前滞后阻尼控制器进行了优化。执行线性化模型仿真以比较主导模式的性能,然后继续非线性模型以评估电力系统振荡下的阻尼性能。所有的仿真都是在两区四机动力系统中进行的,以进行详细的分析。研究结果证明,多目标D形函数是将不稳定和轻微阻尼的机电模式移入稳定区域的有效目标函数。因此,D形功能最终改善了整个系统的阻尼,同时提高了电力系统的可靠性。

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