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首页> 外文期刊>World journal of engineering >Gaussian quantum particle swarm optimization-based wide-area power system stabilizer for damping inter-area oscillations
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Gaussian quantum particle swarm optimization-based wide-area power system stabilizer for damping inter-area oscillations

机译:基于高斯量子粒子群优化的广域电力系统稳定器,用于阻尼区域间振荡

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Purpose - The extensive increase in power demand has challenged the ability of power systems to deal with small-signal oscillations such as inter-area oscillations, which occur under unseen operating conditions. A wide-area measurement system with a phasor measurement unit (PMU) in the power network enhances the observability of the power grid under a wide range of operating conditions. This paper aims to propose a wide-area power system stabilizer (WAPSS) based on Gaussian quantum particle swarm optimization (GQPSO) using the wide-area signals from a PMU to handle the inter-area oscillations in the system with a higher degree of controllability. Design/methodology/approach - In the design of the wide-area stabilizer, a dead band is introduced to mitigate the influence of ambient signal frequency fluctuations. The location and the input signal of the wide-area stabilizer are selected using the participation factor and controllability index calculations. An improved particle swarm optimization (PSO) technique, namely, GQPSO, is used to optimize the variables of the WAPSS to move the unstable inter-area modes to a stable region in the s-plane, thereby improving the overall system stability. Findings - The proposed GQPSO-based WAPSS is compared with the PSO-based WAPSS, genetic algorithm-based WAPSS and power system stabilizer. Eigenvalue analysis, time-domain simulation responses and performance index analysis are used to assess performance. The various evaluation techniques show that GQPSO WAPSS has a consistently good performance, with a higher damping ratio, faster convergence with fewer oscillations and a minimum error in the performance index analysis, indicating a more stable system with effective oscillation damping. Originality/value - This paper proposes an optimally tuned design for the WAPSS with a wide-area input along with a dead-band structure for damping the inter-area oscillations. Tie line power is used as the input to the WAPSS and optimal tuning of the WAPSS is performed using an improved PSO algorithm, known as Gaussian quantum PSO.
机译:目的 - 电力需求的广泛增长对电力系统处理小信号振荡(如区域间振荡)的能力提出了挑战,这些振荡发生在看不见的工作条件下。在电网中带有相量测量单元 (PMU) 的广域测量系统增强了电网在各种工作条件下的可观测性。该文旨在提出一种基于高斯量子粒子群优化(GQPSO)的广域电力系统稳定器(WAPSS),利用PMU的广域信号处理系统中的区域间振荡,具有更高可控性。设计/方法/途径 - 在广域稳定器的设计中,引入了死区以减轻环境信号频率波动的影响。广域稳定器的位置和输入信号是使用参与因子和可控性指数计算来选择的。采用改进的粒子群优化(PSO)技术,即GQPSO对WAPSS的变量进行优化,将不稳定的区域间模式移动到s平面的稳定区域,从而提高系统的整体稳定性。结果 - 将所提出的基于GQPSO的WAPSS与基于PSO的WAPSS、基于遗传算法的WAPSS和电力系统稳定器进行了比较。特征值分析、时域仿真响应和性能指标分析用于评估性能。多种评价技术表明,GQPSO WAPSS具有始终如一的良好性能,具有更高的阻尼比、更快的收敛速度和更少的振荡,性能指标分析的误差最小,表明系统更稳定,具有有效的振荡阻尼。独创性/价值 - 本文提出了一种具有广域输入的 WAPSS 优化调谐设计,以及用于阻尼区域间振荡的死带结构。连接线功率用作WAPSS的输入,并使用改进的PSO算法(称为高斯量子PSO)对WAPSS进行最佳调谐。

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