High‐frequency resonance in HVDC and wind systems
This paper presents methods to model and solve high‐frequency resonance problems in HVDC and wind power systems. Control and digital
High-frequency resonance of bottom-fixed monopile-supported
Dynamic behavior of offshore wind turbines is examined under varying wave amplitudes and frequencies. This study presents a high-fidelity hydroelastic framework for analyzing the
Subsynchronous Resonance in Doubly-Fed Induction Generator
The different factors that impact the frequency characteristic of the wind turbine, thereby making the system prone to SSCI interaction, have been investigated.
LCL Resonance Analysis and Damping in Single-Loop Grid
llow, IEEE, Lin Cheng, Senior Member, IEEE, and Ioannis Lestas, Member, IEEE Abstract—A dynamic phenomenon known as LCL resonance is often neglected when stability analysis is carried out for
MANUSCRIPT PREPARATION GUIDELINES
In this study, the characteristics of resonance phenomena were investigated using a small wind turbine generator. First, the output waveform of a small wind turbine was obtained by field testing, and the
Analysis and Suppression of High-Frequency
It is common to encounter high-frequency harmonic resonance (HFHR) problems when cables interact with wind turbine generators (WTGs).
Analysis and model of high frequency harmonic impedance of grid
Abstract: With more and more doubly fed inductor generators (DFIG) connected to the grid, high frequency resonance may occur due to the interaction between DFIG wind turbines and
CAUSES OF ELECTROMECHANICAL RESONANCE IN WIND
odern high-power wind turbines operating under variable loads and high air turbulence. The article provides a detailed analysis of the mechanisms of electromechanical resonance, including the
A Framework to Analyze the Stochastic Harmonics and
Abstract: This paper addresses a modeling and analysis methodology for investigating the stochastic harmonics and resonance concerns of wind power plants (WPPs).
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