Faculty of Engineering, Electrical Engineering Department, South Valley University, Qena, Egypt.
Faculty of Engineering, Electrical Engineering Department, King Khalid University, Abha, Saudi Arabia.
PLoS One. 2024 Jul 10;19(7):e0305138. doi: 10.1371/journal.pone.0305138. eCollection 2024.
Distributed power generation systems may necessitate connecting multiple independent energy sources that employ various converter topologies. A recent development in this field is the emergence of impedance source converters, offering the ability to deliver buck-boost functionality within a single stage. The split-source inverter (SSI) has been introduced as a novel choice in between this family. Many control strategies have emerged for electrical power systems control. Among the recent emerging controllers, model predictive control strategies have become an effective technique for control systems. Model predictive controllers (MPCs) offer a number of features compared to the conventional and counterpart models such as enhanced system response and improved system transients with reduced steady-state error. This research suggests a finite control-set MPC for three-phase single-stage SSI supporting a standalone load for remote area applications. Considering the proposed FCS-MPC, the output load current tracks its reference magnitude with minimized error. In addition, the proposed FCS-MPC enhances the proposed SSI system performance with a settling time of 10 μs, and approximately without overshoot in the output current. The system has been validated using Opal-RT OP-4510 and the power loss model of the inverter has been explained. In the end two comparisons have been presented to clarify the main points in the topology structure and the control technique.
分布式发电系统可能需要连接多个采用各种转换器拓扑结构的独立能源。该领域的一个最新发展是出现了阻抗源转换器,它能够在单个阶段内提供降压-升压功能。在这个家族中,分源逆变器 (SSI) 已被引入作为一种新的选择。已经出现了许多用于电力系统控制的控制策略。在最近出现的控制器中,模型预测控制策略已成为控制系统的有效技术。与传统和对应模型相比,模型预测控制器 (MPC) 具有许多特性,例如增强的系统响应和改进的系统暂态,同时减少了稳态误差。本研究提出了一种用于单相单级 SSI 的有限控制集 MPC,为远程应用支持独立负载。考虑到所提出的 FCS-MPC,输出负载电流以最小误差跟踪其参考幅度。此外,所提出的 FCS-MPC 增强了所提出的 SSI 系统的性能,其稳定时间为 10 μs,并且输出电流几乎没有过冲。该系统已使用 Opal-RT OP-4510 进行了验证,并解释了逆变器的功率损耗模型。最后,提出了两个比较,以澄清拓扑结构和控制技术中的要点。