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Coordinated Optimization of Parameters of PSS and UPFC-PODCs to Improve Small-Signal Stability of a Power System with Renewable Energy Generation

机译:PSS和UPFC-PODC参数的协调优化,提高具有可再生能源发电机系统的小信号稳定性

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摘要

The ever-increasing penetration of intermittent renewable energy generation from wind farms (WFs) and photovoltaic (PV) plants has significant impacts on the stability of the power system concerned. This paper examined the effect of the power oscillation damping controller (PODC), consisting of a power system stabilizer (PSS) and a unified power flow controller (UPFC), on the stability of a power system with doubly fed induction generators (DFIGs) based WFs and PV plants. The small-signal stability of a power system with intermittent renewable energy generation was enhanced by coordinately adjusting the parameters of damping controllers of the PSS and UPFC-PODC, as formulated as a multiobjective optimization and solved by the steepest descent algorithm (SDA). The well-coordinated application can suppress significantly the low-frequency oscillation (LFO). In addition, an index based on eigenvalues and damping ratios is proposed to measure the damping change of the power system. A four-machine, two-area sample power system was employed to test the proposed method through several designed scenarios, including changing the tie-line transmission power, increasing wind power and PV outputs, and changing WF and PV plant access points. The performance of the proposed method was demonstrated through small-disturbance eigenvalue analysis and short-circuit fault dynamic time-domain simulation. Simulation results showed that simultaneous optimization of parameters among different controllers effectively suppresses local and interarea oscillations.
机译:来自风电场(WFS)和光伏(PV)植物的间歇性可再生能源产生的不断渗透性对有关电力系统的稳定性产生了重大影响。本文研究了电力系统稳定器(PEDC)和统一电流控制器(UPFC)组成的功率振荡阻尼控制器(PODC)的效果,基于双馈电流发电机(DFIG)的电力系统的稳定性WFS和PV植物。通过协调PSS和UPFC-PODC的阻尼控制器的参数来增强具有间歇可再生能量产生的电力系统的小信号稳定性,配制成具有多目标优化并由速度下降算法(SDA)解决。良好协调的应用可以显着抑制低频振荡(LFO)。另外,提出了一种基于特征值和阻尼比率的索引来测量电力系统的阻尼变化。采用四台机器,两区域样品电力系统通过多种设计的场景来测试所提出的方法,包括改变扎线传输功率,增加风电和光伏输出,以及改变WF和PV工厂接入点。通过小扰动特征值分析和短路故障动态时域模拟来证明所提出的方法的性能。仿真结果表明,不同控制器之间的参数同时优化有效地抑制了局部和交通振荡。

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