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An Enhanced Performance of Stationary Reference Frame Controlled Three-phase Vienna Rectifier under Grid Voltage Disturbances
Conference paper

An Enhanced Performance of Stationary Reference Frame Controlled Three-phase Vienna Rectifier under Grid Voltage Disturbances

Srinivas Gude, Surya Chandra Gulipalli, River Chen, Sam Li and Chia-Chi Chu
2023 IEEE Industry Applications Society Annual Meeting, IAS 2023
2023

Abstract

Multiple delayed signal cancellation (MDSC) Power factor correction (PFC) ripple voltage Total harmonic distortion (THD) Vienna rectifier Energy Engineering and Power Technology Renewable Energy Sustainability and the Environment Electrical and Electronic Engineering Industrial and Manufacturing Engineering Mechanical Engineering Safety Risk Reliability and Quality Control and Optimization
In this paper, a new control method in the stationary reference frame to improve the performance of the three-phase Vienna rectifier under grid voltage disturbances has been proposed. The conventional control method has three control loops viz., current control loop, capacitors voltage balance loop, and output voltage control loop. Under grid voltage disturbances, the conventional control method provides poor current total harmonic distortion (THD), high capacitor ripple voltages and high output ripple voltage. To improve the performance of the three-phase Vienna rectifier under grid voltage disturbances, a fundamental frequency positive sequence (FFPS) extractor is placed in the output voltage control loop of the converter. The Multiple delayed signal cancellation (MDSC) filters are used as an FFPS extractor to extract the FFPS component of the reference three-phase grid currents. The design of the output voltage controller with MDSC filters with a symmetrical optimum method is provided. The effectiveness of the proposed control method is verified using real-time simulations with case studies.

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