Javascript must be enabled to continue!
Design and Control of Modular Multilevel Converter for Voltage Sag Mitigation
View through CrossRef
Voltage sag in a power system is an unavoidable power quality issue, and it is also an urgent concern of sensitive industrial users. To ensure the power quality demand and economical operation of the power system, voltage sag management has always drawn great attention from researchers around the world. The latest research that realizes the power quality conditioning has used dynamic voltage restorers (DVRs), static VAR compensator (SVCs), adaptive neuro-fuzzy inference systems (ANFISs), and fuzzy logic controllers based on DVR to mitigate voltage sag. These devices, methods, and control strategies that have been recently used for voltage sag mitigation have some limitations, including high cost, increased complexity, and lower performance. This article proposes a novel, efficient, reliable, and cost-effective voltage sag mitigation scheme based on a modular multilevel converter (MMC) that ensures effective power delivery at nominal power under transient voltage conditions. The proposed method, the MMC, compensates for the energy loss caused by voltage sags using its internal energy storage of the submodules, and ensures reliable power delivery to the load distribution system. Furthermore, control strategies are developed for the MMC to control DC voltage, AC voltage, active power, and circulating current. Detailed system mathematical models of controllers are developed in the dual synchronous reference frame (DSRF). Validation of the results of back-to-back MMC for dynamic load distribution system is analyzed which proves the effectiveness of the proposed scheme for voltage sag mitigation.
Title: Design and Control of Modular Multilevel Converter for Voltage Sag Mitigation
Description:
Voltage sag in a power system is an unavoidable power quality issue, and it is also an urgent concern of sensitive industrial users.
To ensure the power quality demand and economical operation of the power system, voltage sag management has always drawn great attention from researchers around the world.
The latest research that realizes the power quality conditioning has used dynamic voltage restorers (DVRs), static VAR compensator (SVCs), adaptive neuro-fuzzy inference systems (ANFISs), and fuzzy logic controllers based on DVR to mitigate voltage sag.
These devices, methods, and control strategies that have been recently used for voltage sag mitigation have some limitations, including high cost, increased complexity, and lower performance.
This article proposes a novel, efficient, reliable, and cost-effective voltage sag mitigation scheme based on a modular multilevel converter (MMC) that ensures effective power delivery at nominal power under transient voltage conditions.
The proposed method, the MMC, compensates for the energy loss caused by voltage sags using its internal energy storage of the submodules, and ensures reliable power delivery to the load distribution system.
Furthermore, control strategies are developed for the MMC to control DC voltage, AC voltage, active power, and circulating current.
Detailed system mathematical models of controllers are developed in the dual synchronous reference frame (DSRF).
Validation of the results of back-to-back MMC for dynamic load distribution system is analyzed which proves the effectiveness of the proposed scheme for voltage sag mitigation.
Related Results
Effects of Different Voltage Sag Types on Induction Motor
Effects of Different Voltage Sag Types on Induction Motor
This paper analyzes effects caused by voltage sag types A, B, C and D on induction motor based on experimental test. The effect can be investigated in term the current peaks and sp...
Comparative Analysis between Dynamic Voltage Restorer and PWM-Switched Autotransformer in Voltage Sag Mitigation
Comparative Analysis between Dynamic Voltage Restorer and PWM-Switched Autotransformer in Voltage Sag Mitigation
This research aims to address the problem of voltage sag, which is a significant power quality issue in power systems. Voltage sag can lead to power transmission and distribution l...
Design and Simulation Converter with Buck-boost Converter as The Voltage Stabilizer
Design and Simulation Converter with Buck-boost Converter as The Voltage Stabilizer
Buck-boost Converter is the device with the function to convert DC Voltage input to the setpoint DC Voltage output. Buck-boost converter can be used for regulating unstable voltage...
Study, analysis, and development of a small‐scale AC‐AC modular multilevel converter for solid‐state transformer applications
Study, analysis, and development of a small‐scale AC‐AC modular multilevel converter for solid‐state transformer applications
SummaryThe modular multilevel converter presents itself as a promising topology in medium voltage and high power applications due to its modular characteristic and flexibility in a...
Experimental Study on the Phenomenon of Barite Sag
Experimental Study on the Phenomenon of Barite Sag
Abstract
Increasing global energy demand and diminishing petroleum reserves have continually elevated the significance of extended reach deepwater drilling. The e...
Control and modulation of modular multilevel converters
Control and modulation of modular multilevel converters
The integration of renewable energy sources in the electrical grid is reducing our dependence on fossil fuels. However, to ensure feasibility and reliability of distributed energy ...
Self-Supervised Voltage Sag Source Identification Method Based on CNN
Self-Supervised Voltage Sag Source Identification Method Based on CNN
A self-supervised voltage sag source identification method based on a convolution neural network is proposed in this study. In addition, a self-supervised CNN (Convolutional Neural...
Clustering Analysis of Voltage Sag Events Based on Waveform Matching
Clustering Analysis of Voltage Sag Events Based on Waveform Matching
Voltage sags are a serious problem within power supplies, which pose threats to both residential electricity and industrial manufacturing. Since any one sag may be recorded by mult...

