Multivector Model Predictive Power Control With Low Computational Burden for Grid-Tied Quasi-Z-Source Inverter Without Weighting Factors
Author:
Affiliation:
1. School of Electric Power, South China University of Technology, Guangzhou, China
2. New Energy Research Center of Electric Power College, South China University of Technology, Guangzhou, China
Funder
Industry University Research Cooperation Project of Zhuhai
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering
Link
http://xplorestaging.ieee.org/ielx7/63/9803836/09773002.pdf?arnumber=9773002
Reference30 articles.
1. Instantaneous Reactive Power Compensators Comprising Switching Devices without Energy Storage Components
2. A Digital Current Control of Quasi-Z-Source Inverter With Battery
3. A Sliding-Mode Controlled Single-Phase Grid-Connected Quasi-Z-Source NPC Inverter With Double-Line Frequency Ripple Suppression
4. Model Predictive Control of Quasi-Z-Source Four-Leg Inverter
5. Model Predictive Direct Power Control for Active Power Decoupled Single-Phase Quasi-Z -Source Inverter
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1. Generalized discontinuous PWM strategy for Z-source inverters with switch losses optimization;Journal of Power Electronics;2024-07-26
2. A new generalized state-space averaged model, control design and stability analysis for three phase grid-connected quasi-Z-Source inverters;International Journal of Electrical Power & Energy Systems;2024-07
3. Model-Free Predictive Control for Improved Performance and Robustness of Three-Phase Quasi Z-Source Inverters;IEEE Access;2024
4. Prescriptive Grid-Tied Inverter Control;IEEE Journal of Emerging and Selected Topics in Power Electronics;2023-10
5. Model Predictive Control-Based Dual-Mode Operation of an Energy-Stored Quasi-Z-Source Photovoltaic Power System;IEEE Transactions on Industrial Electronics;2023-09
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