Suppr超能文献

基于粒子群优化算法的光伏系统并网 PI 逆变器控制器。

Particle swarm optimization algorithm-based PI inverter controller for a grid-connected PV system.

机构信息

Department of Electrical Power Engineering, Universiti Tenaga Nasional, Kajang, Selangor, Malaysia.

Institute of Sustainable Energy, Universiti Tenaga Nasional, Kajang, Selangor, Malaysia.

出版信息

PLoS One. 2020 Dec 23;15(12):e0243581. doi: 10.1371/journal.pone.0243581. eCollection 2020.

Abstract

The lack of control in voltage overshoot, transient response, and steady state error are major issues that are frequently encountered in a grid-connected photovoltaic (PV) system, resulting in poor power quality performance and damages to the overall power system. This paper presents the performance of a control strategy for an inverter in a three-phase grid-connected PV system. The system consists of a PV panel, a boost converter, a DC link, an inverter, and a resistor-inductor (RL) filter and is connected to the utility grid through a voltage source inverter. The main objective of the proposed strategy is to improve the power quality performance of the three-phase grid-connected inverter system by optimising the proportional-integral (PI) controller. Such a strategy aims to reduce the DC link input voltage fluctuation, decrease the harmonics, and stabilise the output current, voltage, frequency, and power flow. The particle swarm optimisation (PSO) technique was implemented to tune the PI controller parameters by minimising the error of the voltage regulator and current controller schemes in the inverter system. The system model and control strategies were implemented using MATLAB/Simulink environment (Version 2020A) Simscape-Power system toolbox. Results show that the proposed strategy outperformed other reported research works with total harmonic distortion (THD) at a grid voltage and current of 0.29% and 2.72%, respectively, and a transient response time of 0.1853s. Compared to conventional systems, the PI controller with PSO-based optimization provides less voltage overshoot by 11.1% while reducing the time to reach equilibrium state by 32.6%. The consideration of additional input parameters and the optimization of input parameters were identified to be the two main factors that contribute to the significant improvements in power quality control. Therefore, the proposed strategy effectively enhances the power quality of the utility grid, and such an enhancement contributes to the efficient and smooth integration of the PV system.

摘要

在并网光伏 (PV) 系统中,电压过冲、瞬态响应和稳态误差缺乏控制是经常遇到的主要问题,这会导致较差的电能质量性能和整个电力系统的损坏。本文介绍了一种用于三相并网光伏系统中逆变器的控制策略的性能。该系统由光伏电池板、升压转换器、直流母线、逆变器和电阻-电感 (RL) 滤波器组成,并通过电压源逆变器连接到电网。所提出策略的主要目标是通过优化比例积分 (PI) 控制器来改善三相并网逆变器系统的电能质量性能。这种策略旨在减少直流母线输入电压波动、降低谐波并稳定输出电流、电压、频率和功率流。采用粒子群优化 (PSO) 技术来调整 PI 控制器参数,通过最小化逆变器系统中电压调节器和电流控制器方案的误差。系统模型和控制策略是在 MATLAB/Simulink 环境 (版本 2020A) Simscape-Power 系统工具箱中实现的。结果表明,与其他报道的研究工作相比,所提出的策略具有更好的性能,在电网电压和电流分别为 0.29%和 2.72%时总谐波失真 (THD) 更小,瞬态响应时间为 0.1853s。与传统系统相比,基于 PSO 的优化 PI 控制器可将电压过冲降低 11.1%,同时将达到平衡状态的时间减少 32.6%。考虑到附加输入参数和优化输入参数是提高电能质量控制的两个主要因素。因此,所提出的策略有效地提高了电网的电能质量,这种提高有助于光伏系统的高效和顺利集成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7514/7757891/a3b547004d4d/pone.0243581.g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验