基于dp PI控制器的VSI谐波抑制

R. Meshram, Monika Madhusoodan, S. Wagh
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摘要

本章重点讨论了基于动态相量(DP)的模型相对于传统时域模型的优势,以及利用动态相量模型设计的谐波抑制控制器。为了验证基于dp模型设计的控制器的有效性,考虑了各种负载下的单相电压源逆变器(VSI),包括可再生能源(如光伏组件)的间歇性影响。相对于时域模型,DP技术在建模、仿真和控制方面具有明显的优势。利用基于谐波系数测量的DP建模技术的优点,设计了消除VSI中选定电压和电流谐波的PI控制器,并将结果与重复控制技术进行了比较。仿真结果表明,与传统控制方法相比,所提出的基于dp的PI控制器可以有效地消除多个选择频率。
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Harmonic Mitigation for VSI Using DP-Based PI Controller
The chapter focuses on the strengths of dynamic phasor (DP) based model over conventional time domain model and the controller designed using it for selected harmonic mitigation. To validate the effectiveness of the controller designed using DP-based model, the single-phase voltage source inverter (VSI) with various loads has been considered including effects of intermittent nature of renewable energy sources e.g. photovoltaic module. The DP technique offers distinct advantages in modelling, simulation, and control with respect to the time domain models. With the assets of DP modelling technique based on the measurement of harmonic coefficients, the PI controller is designed which eliminates selected voltage and current harmonics in VSI and results are compared with the repetitive control technique. It has been proved through simulations that as compared to conventional technique, the proposed DP-based PI controller eliminates multiple selected frequencies effectively.
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Power System Harmonics Estimation Using Adaptive Filters Harmonic Mitigation for VSI Using DP-Based PI Controller Harmonic Reduction of a Single-Phase Multilevel Inverter Using Genetic Algorithm and Particle Swarm Optimization Compendium of Computational Tools for Power Systems Harmonic Analysis Compensation of Frequency-Dependent Attenuation for Tissue Harmonic Pulse Compression Imaging
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