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一种新的自适应最大功率点跟踪技术,使用改进的 INC 算法和模糊自整定控制器,用于并网光伏系统。

A new adaptive MPPT technique using an improved INC algorithm supported by fuzzy self-tuning controller for a grid-linked photovoltaic system.

机构信息

Electrical Department, Faculty of Technology and Education, Suez University, Suez, Egypt.

Department of Electrical Engineering, Faculty of Energy Engineering, Aswan University, Aswan, Egypt.

出版信息

PLoS One. 2023 Nov 3;18(11):e0293613. doi: 10.1371/journal.pone.0293613. eCollection 2023.

Abstract

Solar energy, a prominent renewable resource, relies on photovoltaic systems (PVS) to capture energy efficiently. The challenge lies in maximizing power generation, which fluctuates due to changing environmental conditions like irradiance and temperature. Maximum Power Point Tracking (MPPT) techniques have been developed to optimize PVS output. Among these, the incremental conductance (INC) method is widely recognized. However, adapting INC to varying environmental conditions remains a challenge. This study introduces an innovative approach to adaptive MPPT for grid-connected PVS, enhancing classical INC by integrating a PID controller updated through a fuzzy self-tuning controller (INC-FST). INC-FST dynamically regulates the boost converter signal, connecting the PVS's DC output to the grid-connected inverter. A comprehensive evaluation, comparing the proposed adaptive MPPT technique (INC-FST) with conventional MPPT methods such as INC, Perturb & Observe (P&O), and INC Fuzzy Logic (INC-FL), was conducted. Metrics assessed include current, voltage, efficiency, power, and DC bus voltage under different climate scenarios. The proposed MPPT-INC-FST algorithm demonstrated superior efficiency, achieving 99.80%, 99.76%, and 99.73% for three distinct climate scenarios. Furthermore, the comparative analysis highlighted its precision in terms of control indices, minimizing overshoot, reducing rise time, and maximizing PVS power output.

摘要

太阳能作为一种主要的可再生资源,依赖于光伏系统(PVS)来高效地捕获能源。挑战在于最大限度地提高发电效率,由于光照和温度等环境条件的变化,发电效率会发生波动。最大功率点跟踪(MPPT)技术已经被开发出来以优化 PVS 的输出。其中,增量电导(INC)法得到了广泛的认可。然而,适应不断变化的环境条件仍然是一个挑战。本研究提出了一种用于并网 PVS 的自适应 MPPT 方法,通过模糊自整定控制器(INC-FST)更新的 PID 控制器对经典 INC 进行改进。INC-FST 可以动态调节升压转换器的信号,将 PVS 的直流输出与并网逆变器连接。通过与传统 MPPT 方法(如 INC、扰动量观察法(P&O)和 INC 模糊逻辑(INC-FL))进行综合评估,比较了所提出的自适应 MPPT 技术(INC-FST)。评估指标包括在不同气候条件下的电流、电压、效率、功率和直流母线电压。所提出的 MPPT-INC-FST 算法在三个不同的气候条件下的效率分别达到了 99.80%、99.76%和 99.73%。此外,对比分析突出了其在控制指标方面的精确性,最小化了过冲、减少了上升时间,并最大限度地提高了 PVS 的功率输出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50c6/10624298/f1c90ca8952c/pone.0293613.g001.jpg

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