Load Power Smoothing and DC Bus Voltage Control of PV-SMES Standalone Microgrid based Variable Speed DG using FLC-MPC Approach

H. Habib, Shaorong Wang, Bashar Sakeen Farhan, Hasan Wahhab Salih, A. Waqar, Kotb M. Kotb
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引用次数: 2

Abstract

Microgrids (MGs) are small scale power grids which comprised of local clean and green energy generation as well as smart energy management units. These systems represent promising solutions for the development of future smart cities. This paper proposes a stand-alone hybrid microgrid system comprising of a variable speed diesel generator (VSDG) and photovoltaic (PV) system in order to reduce the fuel consumption and carbon emissions. Maximum power point tracking (MPPT) is applied to the PV system in coordination with a superconducting magnetic energy storage (SMES) unit since the output power affects the speed response of the generator. A fuzzy logic controller (FLC) is developed to track the speed response. A Load Power Tracking (LPT) algorithm is proposed to extract the exact amount of required power from the generation side based on the load demand. Furthermore, this study compares the system performance and load power quality by applying space vector pulse width modulation-based PI controller (SVPWM-PI) against model predictive control (MPC) to the interlinking inverter. Simulation results show the superior performance of MPC with fewer voltage harmonics and better load power quality.
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基于FLC-MPC方法的PV-SMES独立微网变速DG负载功率平滑与直流母线电压控制
微电网是由当地清洁和绿色能源发电以及智能能源管理单元组成的小型电网。这些系统代表了未来智慧城市发展的有希望的解决方案。本文提出了一种由变速柴油发电机(VSDG)和光伏(PV)系统组成的独立混合微电网系统,以降低燃料消耗和碳排放。由于输出功率影响发电机的转速响应,将最大功率点跟踪(MPPT)应用于光伏发电系统中,并与超导磁能存储装置(SMES)配合使用。设计了一种模糊逻辑控制器(FLC)来跟踪速度响应。提出了一种基于负荷需求从发电侧准确提取所需功率的负荷跟踪算法。此外,本研究通过将基于空间矢量脉宽调制的PI控制器(SVPWM-PI)与模型预测控制(MPC)应用于互连逆变器,比较了系统性能和负载电能质量。仿真结果表明,MPC具有较低的电压谐波和较好的负载电能质量。
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