Sequential model predictive control for five-level MMC-based multi-terminal HVDC systems

被引:0
作者
Ali Bouzidi
Said Barkat
Ali Akka
Mohamed Lokmane Bendaas
机构
[1] University of M’sila,Department of Electrical Engineering
[2] Higher Normal School of Boussada,Department of Physics Sciences
[3] Batna 2 University,Department of Electrical Engineering
来源
Journal of Power Electronics | 2023年 / 23卷
关键词
High-voltage direct current; Modular multi-level converter; Sequential model predictive control; Capacitor voltage balancing; Circulating current minimization;
D O I
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中图分类号
学科分类号
摘要
In this paper, a Sequential Model Predictive Control (SMPC) is proposed for controlling a Modular Multilevel Converter (MMC)-based Multi-Terminal high Voltage Direct Current (MTDC) grid. Based on an adequate predictive model of the grid side of each MMC unit, cost functions are designed and optimized to generate the appropriate switching states of each MMC. In addition to its ability to guarantee accurate power-sharing between deferent controlled MMCs units, the conspicuous features of the propose MPC strategy are the sub-module capacitor voltages balancing and MMC circulating currents minimization. To validate the performance and the effectiveness of the proposed control approach in terms of its ability to achieve the desired performance under various operational conditions, comprehensive simulation studies are conducted on a four-terminal MMC-MTDC system.
引用
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页码:1507 / 1516
页数:9
相关论文
共 111 条
[1]  
Silva A(2019)An accurate method for fault location in HVDC systems based on pattern recognition of DC voltage signals Electric Power Syst. Res. 170 64-71
[2]  
Santos R(2017)Uno lamm: the father of HVDC transmission IEEE Power Energ. Mag. 15 92-102
[3]  
Torres J(2020)Performance analysis of series/parallel and dual side LCC compensation topologies of inductive power transfer for EV battery charging system Front. Energy 14 166-179
[4]  
Coury D(2017)Recent advances in HVDC and UHVDC transmission IEEE Power Electron. Mag. 4 12-18
[5]  
Korytowski M(2009)VSC-based HVDC power transmission systems: an overview IEEE Trans. Power Electron. 24 92-602
[6]  
Nayak S-R(2022)Analysis and stabilization control of a voltage source-controlled wind farm under weak grid conditions Front. Energy 16 1-13
[7]  
Kishan D(2018)Review of HVDC control in weak AC grids Electric Power Syst. Res. 162 194-206
[8]  
Keim T(2010)Multi-terminal VSC HVDC for the European super grid: obstacles Renew. Sustain. Energy Rev. 14 3156-3163
[9]  
Bind A(2022)Steady-state power distribution in VSC-based MTDC systems and dc grids under mixed P/V and I/V droop control J. Electric Power Syst. Res. 214 2553-2580
[10]  
Flourentzou N(2010)Recent advances and industrial applications of multilevel converters IEEE Trans. Industr. Electron. 57 4176-2524