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Optimization of perturb and observe maximum power point tracking method

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TLDR
In this article, the perturb and observe (PO) algorithm is used in photovoltaic (PV) systems to maximize the PV array output power by tracking continuously the maximum power point (MPP) which depends on panels temperature and on irradiance conditions.
Abstract
Maximum power point tracking (MPPT) techniques are used in photovoltaic (PV) systems to maximize the PV array output power by tracking continuously the maximum power point (MPP) which depends on panels temperature and on irradiance conditions. The issue of MPPT has been addressed in different ways in the literature but, especially for low-cost implementations, the perturb and observe (PO moreover, it is well known that the P&O algorithm can be confused during those time intervals characterized by rapidly changing atmospheric conditions. In this paper it is shown that, in order to limit the negative effects associated to the above drawbacks, the P&O MPPT parameters must be customized to the dynamic behavior of the specific converter adopted. A theoretical analysis allowing the optimal choice of such parameters is also carried out. Results of experimental measurements are in agreement with the predictions of theoretical analysis.

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Proceedings ArticleDOI

Current-sensorless MPPT with DC-DC boost converter for Photovoltaic battery chargers

TL;DR: In this article, a simple current-sensorless MPPT with dc-dc boost converter for photovoltaic battery chargers is proposed, where the current sensor is substituted with a new quantity that employs both of the input voltage and the duty ratio of the converter.
Proceedings ArticleDOI

A high performance MPPT control method

TL;DR: The analysis, design and implementation of a high-performance step-up Maximum power point tracking system for grid-connected Photovoltaic (PV) generation is presented and a simple boost topology using radiometer and a voltage sensor is proposed with the MPPT algorithm.
Journal ArticleDOI

Numerical approach to estimate the maximum power point of a photovoltaic array

TL;DR: In this article, a novel approach to estimate the maximum power point (MPP) of a photovoltaic (PV) array on an hourly basis using meteorological data is presented.
Journal ArticleDOI

An Adaptive Model-Based MPPT Technique with Drift-Avoidance for Grid-Connected PV Systems

TL;DR: In this article, a modified control structure for a single-stage three phase grid-connected photovoltaic (PV) system is presented and the maximum power point tracking function is developed using a new adaptive model-based technique, which succeeds at capturing the maximum available power from the PV source with no drift.
Proceedings ArticleDOI

Effects of partial shading on Photovoltaic with advanced MPPT scheme

TL;DR: In this article, the impact of partial shading on P&O and Incremental Conductance based maximum power point tracking (MPPT) techniques has been discussed and an innovative MPPT solution has also been proposed.
References
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Journal ArticleDOI

Maximum photovoltaic power tracking: an algorithm for rapidly changing atmospheric conditions

TL;DR: In this article, the authors developed an incremental conductance (IncCond) algorithm to track the maximum power operating point (MPOP) of photovoltaic (PV) power generation systems.
Journal ArticleDOI

Development of a microcontroller-based, photovoltaic maximum power point tracking control system

TL;DR: In this paper, a buck-type DC/DC converter is used to maximize the photovoltaic array output power, irrespective of the temperature and irradiation conditions and of the load electrical characteristics.
Journal ArticleDOI

Comparative study of maximum power point tracking algorithms

TL;DR: It is found that the P&O method, when properly optimized, can have MPPT efficiencies well in excess of 97%, and is highly competitive against other MPPT algorithms.
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Basic circuit theory

Journal ArticleDOI

Implementation of a DSP-controlled photovoltaic system with peak power tracking

TL;DR: A simple method of tracking the maximum power points (MPPs) and forcing the system to operate close to these points is presented, and the principle of energy conservation is used to derive the large- and small-signal model and transfer function.
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