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首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Electrical Engineering >Reducing Cost and Size in Photovoltaic Systems Using Three-Level Boost Converter Based on Fuzzy Logic Controller
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Reducing Cost and Size in Photovoltaic Systems Using Three-Level Boost Converter Based on Fuzzy Logic Controller

机译:基于模糊逻辑控制器的三电平升压转换器降低光伏系统的成本和尺寸

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摘要

Photovoltaic (PV) systems are dependent on two main factors of temperature and solar radiation, changing the PV system into a nonlinear system. Therefore, it is necessary to propose an intelligent control system for power control of PV systems to tackle this issue. So, a three-level boost converter (TLBC) based on the maximum power point tracking (MPPT) with fuzzy intelligent control is suggested to solve the problems. In this paper, instead of using the conventional boost converter, TLBC is used. However, the conventional boost converter is typically used in PV systems as the interface between the PV panel and the consumer. TLBC has a lower weight and cost than the conventional boost converter. In addition, the main scope of this paper is reducing the system weight and employing TLBC with MPPT for controlling the output power without any fluctuations. In addition, the MPPT controller for TLBC is developed based on fuzzy logic and is compared with perturb and observe (P&O) algorithm, proportional-integral (PI) controller, particle swarm optimization (PSO) algorithm, and hybrid simplified accelerated particle swarm optimization (HSAPSO) algorithm. Using fuzzy logic controller (FLC), the value of MPP is tracked suitably under different climatic conditions as well as different temperatures and radiation, where TLBC passes the energy from a PV panel to the output in a high-speed and free-oscillation manner. Furthermore, balancing the voltage of TLBC capacitors with the proportional controller (P) is done due to their non-equivalent series resistance. The simulation results in MATLAB suggest the accuracy and performance of the system.
机译:光伏(PV)系统取决于温度和太阳辐射的两个主要因素,从而将PV系统变为非线性系统。因此,有必要提出一种智能控制系统来解决光伏系统的功率控制问题。因此,提出了一种基于最大功率点跟踪(MPPT)和模糊智能控制的三级升压转换器(TLBC)来解决该问题。在本文中,TLBC代替了传统的升压转换器。但是,传统的升压转换器通常在PV系统中用作PV面板和用户之间的接口。与传统的升压转换器相比,TLBC的重量和成本更低。此外,本文的主要范围是减轻系统重量,并采用带MPPT的TLBC来控制输出功率而不会出现任何波动。此外,基于模糊逻辑开发了用于TLBC的MPPT控制器,并将其与扰动和观察(P&O)算法,比例积分(PI)控制器,粒子群优化(PSO)算法和混合简化的加速粒子群优化( HSAPSO)算法。使用模糊逻辑控制器(FLC),可以在不同的气候条件以及不同的温度和辐射下对MPP的值进行适当的跟踪,其中TLBC以快速自由振荡的方式将能量从PV面板传递到输出。此外,由于它们的非等效串联电阻,可以通过比例控制器(P)平衡TLBC电容器的电压。 MATLAB中的仿真结果表明了该系统的准确性和性能。

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