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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Impact of high-depth penetration of wind power on low-frequency oscillatory modes of interconnected power systems
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Impact of high-depth penetration of wind power on low-frequency oscillatory modes of interconnected power systems

机译:风电的深度渗透对互联电力系统的低频振荡模式的影响

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摘要

This paper investigates impact of high-depth penetration of wind power, i.e., up to 30%, on low-frequency (0-2 Hz) oscillatory modes of interconnected power systems. The wind power is integrated as large Wind Power Plants (WPPs) based on Type-3 and Type-4 wind units represented by enhanced generic nonlinear and linearized models. The studies are based on eigen analysis of the 16-machine/68-bus NPCC equivalent system with multiple WPPs added to it. The case studies consider different ratios of Type-3/Type-4 WPPs to investigate impact of interaction between WPPs adopting different technologies on power system low-frequency dynamics. The studies reveal that WPPs can (i) noticeably impact the damping ratios of existing inter-area oscillatory modes at low-depth penetrations more than at high-depth ones, (ii) introduce new low-frequency oscillatory modes and (iii) cause instability by interacting with existing controllers in the system.
机译:本文研究了风力的深度渗透(即高达30%)对互联电力系统的低频(0-2 Hz)振荡模式的影响。该风力发电被整合为大型风力发电厂(WPP),基于增强型通用非线性和线性化模型表示的Type-3和Type-4风力发电机组。这些研究基于添加了多个WPP的16机/ 68总线NPCC等效系统的特征分析。案例研究考虑了不同比率的3类/ 4类WPP,以研究采用不同技术的WPP之间的相互作用对电力系统低频动力学的影响。研究表明,WPP可以(i)在低深度穿透时显着影响现有区域间振荡模式的阻尼比,而在高深度穿透时,(ii)引入新的低频振荡模式,并且(iii)引起不稳定性通过与系统中的现有控制器进行交互。

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