Knowledge-Based Sensors for Controlling A High-Concentration Photovoltaic Tracker

Author:

Canada-Bago Joaquin,Fernandez-Prieto Jose-Angel,Gadeo-Martos Manuel-Angel,Perez-Higueras Pedro

Abstract

To reduce the cost of generated electrical energy, high-concentration photovoltaic systems have been proposed to reduce the amount of semiconductor material needed by concentrating sunlight using lenses and mirrors. Due to the concentration of energy, the use of tracker or pointing systems is necessary in order to obtain the desired amount of electrical energy. However, a high degree of inaccuracy and imprecision is observed in the real installation of concentration photovoltaic systems. The main objective of this work is to design a knowledge-based controller for a high-concentration photovoltaic system (HCPV) tracker. The methodology proposed consists of using fuzzy rule-based systems (FRBS) and to implement the controller in a real system by means of Internet of Things (IoT) technologies. FRBS have demonstrated correct adaptation to problems having a high degree of inaccuracy and uncertainty, and IoT technology allows use of constrained resource devices, cloud computer architecture, and a platform to store and monitor the data obtained. As a result, two knowledge-based controllers are presented in this paper: the first based on a pointing device and the second based on the measure of the electrical current generated, which showed the best performance in the experiments carried out. New factors that increase imprecision and uncertainty in HCPV solar tracker installations are presented in the experiments carried out in the real installation.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

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1. Design and Characterization of a single-axis solar tracker system for Small Scale Parabolic trough collectors;Energy Sources, Part A: Recovery, Utilization, and Environmental Effects;2023-09-18

2. Development and performance test of a novel solar tracking sensor;Metrology and Measurement Systems;2023-02-22

3. A Knowledge-Based Battery Controller for IoT Devices;Journal of Sensor and Actuator Networks;2022-11-21

4. Evaluation of control strategies applied in small-scale photovoltaic solar tracking systems: a review;IOP Conference Series: Materials Science and Engineering;2022-09-01

5. Performance assessment of a dual‐axis solar tracker for concentrator photovoltaic systems;International Journal of Energy Research;2022-05-11

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