Enhancing voltage stability of grid forming power converters based on model predictive controller

IF 5 2区 工程技术 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC International Journal of Electrical Power & Energy Systems Pub Date : 2024-11-05 DOI:10.1016/j.ijepes.2024.110317
Qudrat Ullah , Enio Costa Resende , Luiz Carlos Gomes Freitas , Hannu Laaksonen , Marcelo Godoy Simões
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Abstract

This research article proposes an advanced control strategy based on a finite control set model predictive controller (FCS-MPC) for parallel-connected voltage source inverters (VSIs) for standalone operation of AC microgrids (MGs). The AC MGs may be consisted of two or more parallel connected VSIs connected and have ability to regulate the output line to line voltages at the point of common coupling (PCC) sustaining the local power demand. It is possible to attain these functionalities using traditional and linear control approaches, but there exist several challenges like sensitivity problems associated to parametric and non-parametric variations and they are unable to handle with existing constraints in system and resulting in slow dynamic response. An imperative feature of this research study is that proportional integral (PI) as well as proportional resonant (PR) controller based VSI was designed, studied and its performance was compared with FCS-MPC based VSI. The proposed FCS-MPC-based scheme handles several challenges effectually by confirming a stable and robust operation for Gridforming (GFM) inverters of AC MGs. In this scheme, the voltage reference over the predictive horizon is tracked by formulating a cost function (CF) and droop control is used to attain power sharing among distributed generations (DGs). The operation of standalone AC MG is authenticated by extensive simulations in MATLAB/Simulink environment, demonstrating that the FCS-MPC strategy shows quick dynamic response, improved power quality as well as enhanced voltage stability. The simulation results also reveal that total harmonic distortion (THD) of output line to line voltages is 0.86% for linear loads and 0.98 % for nonlinear loads, verifying that the THD level is primarily in the acceptable range defined by the IEC as well as IEEE standards, highlighting the AC MG system’s compliance with international standards.
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基于模型预测控制器提高电网电力转换器的电压稳定性
本文提出了一种基于有限控制集模型预测控制器(FCS-MPC)的先进控制策略,适用于交流微电网(MGs)独立运行的并联电压源逆变器(VSIs)。交流微电网可能由两个或多个并联的 VSI 组成,能够调节共同耦合点 (PCC) 的输出线对线电压,以满足当地的电力需求。使用传统的线性控制方法可以实现这些功能,但存在一些挑战,如与参数和非参数变化相关的灵敏度问题,以及无法处理系统中的现有约束条件,导致动态响应速度缓慢等。本研究的一个重要特点是设计、研究了基于比例积分(PI)和比例谐振(PR)控制器的 VSI,并将其性能与基于 FCS-MPC 的 VSI 进行了比较。所提出的基于 FCS-MPC 的方案有效地应对了多项挑战,为交流发电机的电网成形 (GFM) 逆变器实现了稳定、稳健的运行。在该方案中,通过制定成本函数(CF)来跟踪预测范围内的电压参考值,并使用下垂控制来实现分布式发电(DG)之间的功率共享。在 MATLAB/Simulink 环境中进行的大量仿真验证了独立交流发电机的运行,表明 FCS-MPC 策略具有快速动态响应、改善电能质量和增强电压稳定性的特点。仿真结果还显示,线性负载的输出线对线电压总谐波失真(THD)为 0.86%,非线性负载为 0.98%,验证了总谐波失真水平主要在 IEC 和 IEEE 标准规定的可接受范围内,突出表明交流 MG 系统符合国际标准。
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来源期刊
International Journal of Electrical Power & Energy Systems
International Journal of Electrical Power & Energy Systems 工程技术-工程:电子与电气
CiteScore
12.10
自引率
17.30%
发文量
1022
审稿时长
51 days
期刊介绍: The journal covers theoretical developments in electrical power and energy systems and their applications. The coverage embraces: generation and network planning; reliability; long and short term operation; expert systems; neural networks; object oriented systems; system control centres; database and information systems; stock and parameter estimation; system security and adequacy; network theory, modelling and computation; small and large system dynamics; dynamic model identification; on-line control including load and switching control; protection; distribution systems; energy economics; impact of non-conventional systems; and man-machine interfaces. As well as original research papers, the journal publishes short contributions, book reviews and conference reports. All papers are peer-reviewed by at least two referees.
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