Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P &...

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SOLAR TRACKING USING FUZZY LOGIC Presented By Megha Srikanth

Transcript of Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P &...

Page 1: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

SOLAR TRACKING USING FUZZY LOGIC Presented By

Megha Srikanth

Page 2: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

An Overview

IntroductionPrinciple of MPPT ControlMPPT techniquesP & O controllerFuzzy logic of MPPT controlConclusion

Page 3: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

INTRODUCTION

This scheme is capable of following the trajectory of the sun throughout the day on a year-round basis.

Various schemes have been proposed for optimizing the tilt angle and orientation of solar collectors

The actual energy conversion efficiency of PV module is rather low

Page 4: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

PRINCIPLE OF MPPT

The photovoltaic module operation depends strongly on the load characteristics

The connection between the source and the load is considered

Furthermore the characteristics of a PV system vary with temperature and insulation

Page 5: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

Current-voltage characteristic of a PV module

Page 6: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

Photovoltaic system

Page 7: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

MPPT TECHNIQUES

Voltage feedback based methods

Current feedback based methods

Power based methods

Page 8: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

P & O CONTROLLER Principle is to provoke perturbation by acting

on the PWM duty cycle and observing the effect on the output PV power.

when dp / dv > 0 , the voltage is increased, D (k )= D (k – 1) + C

when dp / dv < 0 , the voltage is decreased, D(k ) = D(k − 1) − C .

Page 9: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

Power-voltage characteristic of a PV module

Page 10: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

Basic circuit of the boost chopper

Page 11: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

Fuzzy logic of MPPT control

They have the advantage to be robust and relatively simple to design

They do require the complete knowledge of the operation of the PV system by the designer.

Page 12: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

General diagram of a fuzzy controller

Page 13: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

Membership functions of (a) error E - (b) change of error CE - (c) duty ratio D

Page 14: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

CONCLUSIONFuzzy controller is faster than the P&O

controller in the transitional state

Presents also a much smoother signal with less fluctuations in steady state

It can provide an order more effective than the traditional controllers for the nonlinear systems

Page 15: Presented By Megha Srikanth. An Overview Introduction Principle of MPPT Control MPPT techniques P & O controller Fuzzy logic of MPPT control Conclusion.

REFERENCESV. Salas, E. Olias, A. Barrado and A. Lazaro,

‘Review of the Maximum Power Point Tracking Algorithms for Stand-Alone Photovoltaic Systems’, Solar Energy Materials & Solar Cells

H. Knopf, ‘Analysis, Simulation and Evaluation of Maximum Power Point Tracking (MPPT)

F. Boehinger, ‘Self Adaptive DC Converter for Solar Spacecraft Power Supply’, IEEE