PV System Components Advanced Engineering The Technology Landstown High School.

Slides:



Advertisements
Similar presentations
PhotoVoltaic System Sizing © ARJ This is not a How-To presentation. It is a What and Why presentation.
Advertisements

Photovoltaic Solar Energy
ERA SOLAR PRODUCTS ERA Renewable Energy. Solar energy is the ultimate source of energy from millions of years and it is a renewable energy. This energy.
High Efficiency Thin Film Solar Cells
PowerPoint ® Presentation Chapter 4 System Components and Configurations Components Electricity Sources System Configurations.
Chapter 6 Solar Energy. Objectives State why solar energy is one of the long term options for energy independence. Describe 3 basic types of active solar.
Solar Energy Florida Electric Cooperatives Association 2014 Finance & Accounting Conference Glenn Spurlock September 17, 2014.
Solar Energy Presented By: Isah Adamu Bazuwa (099271) Sani khalil (118312)
Alternate Energy Using Solar Power. Solar Energy Solar energy: is energy that is created through the use of the sun. Solar energy can be used for heating.
4 types of Solar power  Photovoltaics  Concentrated tower systems  Passive and active heating systems.
ELECTRICAL SYSTEMS 21.3.
Solar cells – tapping into a renewable energy resource.
Photovoltaic Cells By: Charity Henderson & Laura Metzler.
What is Solar Power? A Simple Example How Does Solar Work? Where do we use Solar Power? What is Photovoltaic Power? What are the Components of a Solar.
Photovoltaic Panels Eric Hoke. How Solar Panels Work.
Mr.Pinij Siripuekpong Assistant Director of Research and Development Office Electricity Generating Authority of Thailand Appropriate Technology for Solar.
Lesson 25: Solar Panels and Economics of Solar Power
By Dale A Gulden, Solar Direct CEO. Solar Electric – Basic Components 1. Modules – solar electric collectors. 3 basic types in the marketplace: Mono crystalline,
Photovoltaic Solar Cells and Solar Energy Systems for Home Usages Mohammad Anisuzzaman.
Solar Power By: Ashton Mitzel. History  1876  founded that when selenium is exposed to light it creates electricity, without using any heat or movement.
By Elizabeth Boyer, Carolyn Robertson, Karleigh Cresswell.
Why Use Solar Cells? Low maintenance, long lasting sources of energy Provides cost-effective power supplies for people remote from the main electricity.
1. Presentation Overview  Solar Industry Overview  Intro into Solar Photovoltaics  Types of PV Systems  Solar Product Offering –Solar Combiner Boxes.
Zero – Energy Building What constitutes a zero energy building? A building that uses a “net” of zero energy – typically producing excess energy via renewables.
SOLAR CELL PRESENTED BY ANJALI PATRA ANKITA TRIPATHY BRANCH-EEE.
Electricity Compare AC and DC electrical current and understand their important differences Explain the relationship between volts, amps, amp-hour, watts,
Solar Lightings Solar Module. Charge Controller. Battery. Inverter. Loads Accessories.
Solar PV Design Implementation O& M March 31- April 11, 2008 Marshall Islands 2. Solar Home Systems (SHS) 2. Solar Home Systems (SHS) Herb Wade PPA Consultant.
Sustainable House. Passive Solar Design. Passive solar design is the process of designing and orientating new buildings or modifying existing ones to.
Sustainable Energy Systems Engineering Peter Gevorkian Ch 2: Solar Power Generation Design Brevard Community College EST1830 Bruce Hesher.
Solar Options The “Greening” of Local Communities.
Photovoltaics. Agenda What is PV? System Types Mounting Options Product Options System cost & performance System sizing considerations Advantages of PV.
Solar Energy Physics Three forms of solar energy.  Passive Solar  Active Solar  Photovoltaic.
Solar Energy George Stone, Richard Schiavone. General description of Solar Energy  Concentrated solar power systems use lenses or mirrors and tracking.
Designing Solar PV Systems (Rooftops ). Module 1 : Solar Technology Basics Module 2: Solar Photo Voltaic Module Technologies Module 3: Designing Solar.
Solar Energy: The Ultimate Renewable Resource. What is Solar Energy? Originates from nuclear fusion reactions in the sun Originates from nuclear fusion.
Solar Photovoltaic
Photovoltaic (fo-to-vol-ta-ik) systems are solar systems that produce electricity directly from sunlight. The term "photo" comes from the Greek "phos,"
A Solar Powered Bus Stop System
Renewable Power Generation Solar Photovoltaic (PV) Wind Energy Hydropower Solar Thermal Electric Geothermal.
Solar Energy Amar Krijestorac Haley Rashid Relicious Eboh.
Michael Ikerionwu 4 th year Electronic Engineering.
Solar panel Mathieu and thomas. What is a solar panel Solar panel refers either to a photovoltaic module, a solar hot water panel, or to a set of solar.
PHOTOVOLTAIC APPLICATIONS Jiyeon HYUN. What is photovoltaic ? Photovoltaics are best known as a method for generating electric power by using solar cells.
Electricity is a form of energy Electricity can exert a force on other objects Think of your Laws of Charge activity Electricity is when electrons flow.
Solar Energy! Created by: Miranda Hager, Eden Campbell, Brooklyn Burkes, and Miles Jackson. This power point will explain the positive and negative things.
Good day, sunshine!  Please get out your solar handout from last class!  Please read the board!
Red Rocks Community College ENY 130 Grid-Tied PV Fall 2009 Module 2.
Good day, sunshine!  Please pass back the objective sheet.  Please read the board!
How it works Solar cells are what convert the energy of the sunlight to electricity through the photovoltaic effect. The free flow of electrons through.
Solar Energy. Solar panels Instead of using fossil fuels, solar power technologies use photovoltaic (PV) panels to convert sunlight directly into electricity.
We hear much about energy problems; supply shortages, pollution issues and high prices, but the solutions to these problems are here now in the form of.
1. INTRODUCTION 2. CONCENTRATED SOLAR POWER 3. PARABOLIC TROUGH 4. SOLAR PANELS 5. PHOTOVOLTAICS 6. PV SYSTEM 7. ADVANTAGES & DISADVANTAGES 8. STORAGE.
Team ATeam B Final round (1 point for each correct answer) Question 1Question 2Question 3Question 4Question 5 Question 6Question 7Question 8Question 9Question.
Introduction to Solar Photovoltaic (PV) Systems – Part 2
CELLS IN SERIES AND PARALLEL Lesson 9. Cells in Series  The electric potential given to a single electron by a dry cell has an average voltage of around.
What Will We Do If Our Oil Supply Runs Out?. What Will We Do Click here to get an answer! If Our Oil Supply Runs Out?
Solar Power Systems The savings from utilising solar power.
Call now! A Guide for Residential, Grid-Connected PV Systems © 2012 American Solar Electric. All rights reserved.
What is PV System? Photovoltaic (PV) system is an electrical system consisting of array of one or more PV modules, conductors, electrical components,
Medors.in DESCRIPTION Off-grid refers to not being connected to a grid generally National grid Off-the-grid homes are autonomous, they do not rely on.
Photovoltaic and Battery Primer
Photovoltaic and Battery Primer
The PV Cell Cell, Module & Array.
Solar Energy Improvement Techniques
Photovoltaic Systems Engineering
Series and Parallel Circuits
Photovoltaic Systems Engineering
Chapter Twenty One: Electrical Systems
Presentation transcript:

PV System Components Advanced Engineering The Technology Landstown High School

What is a solar cell? Solid state device that converts solar energy directly into electrical energy Efficiencies from 10%- 80% No moving parts No noise Lifetimes of years or more

Cross Section of Solar Cell

How Does It Work? The junction of dissimilar materials (n (+) and p (- ) type silicon) creates a voltage, Energy from sunlight knocks out electrons, creating a electron, Connecting both sides to an external circuit causes current to flow, In essence, sunlight on a solar cell creates a small battery with voltages typically 0.5 volt DC,

Combining Solar Cells Solar cells can be electrically connected in series (voltages add) or in parallel (currents add) to give any desired voltage and current, Power (Watts) output is calculated P = I x V Photovoltaic cells are typically sold in modules (or panels) of 12 volts with power outputs of 50 to 100+ watts. These are then combined into arrays to give the total desired power or watts.

Cells, Modules, Arrays

Other System Components While a major component and cost of a PV system is the array, several other components are typically needed. These include: The inverter – DC to AC electricity DC and AC safety switches Batteries (optional depending on design) Monitor – (optional but a good idea) Ordinary electrical meters work as net meters

The Photovoltaic Array with its other electrical components

PV was developed for the space program in the 1960’s

PV Price and Quantity Manufactured Relationship

The PV Market Solar Calculators REMOTE POWER Lighting Buoys Communications Signs Water Pumping Mountain Cabins

Photovoltaic Array for Lighting

Telecommunications Tower

Remote Water Pumping in Utah

Recreation Vehicle Outfitted with Solar Panels

Solar Lanterns for Landscaping

A Solar Driven Band

The PV Market As prices dropped, PV began to be used for stand- alone home power. If you didn’t have an existing electrical line close to your property, it was cheaper to have a PV system (including batteries and a backup generator) than to connect to the grid. As technology advanced, grid-connected PV with net metering became possible.

NET METERING In net metering, when the PV system produces excess electricity, it is sent to the grid system, turning the meter backwards. If you are using more power than is being produced, or it is at night, the electricity is received from the grid system and the meter turns forwards. Depending on PV size and electrical consumption, you may produce more or less than you actually use. Individual houses may become power producers.

Net Metering can be done with or without a battery backup

BATTERIES Batteries can be used to provide long-term or short-term electrical supply in case of grid failure. Many grid-connected houses choose to have a small electrical battery system to provide loads with power for half a day in case of outage. Larger number of batteries are typically used for remote grid-independent systems.

2 KW PV on Roof with battery storage. Solar hot water collectors and tank

PV On Homes PV can be added to existing roofs. While south tilted exposure is best, flat roofs do very well. Even east or west facing roofs that do not have steep slopes can work fairly well if you are doing net metering since the summer sun is so much higher and more intense than the winter sun. The exact performance of any PV system in any orientation is easily predictable.

Photovoltaic Array on Roof and as an Overhang

½ KW PV System Installed along Roof Ridge

California Home PV Installation

PV on House

2.4 KW System under Installation in New Hampshire

PV Installed at Roofline on Building at Frost Valley, NY

PV Panels on Tile Roofs in Arizona

PV on Roof in California

Other Mounting Systems? If it is impossible or you don’t want to put a PV system on your existing roof, it is possible to pole mount the arrays somewhere near the house as long as the solar exposure is good. Pole mounted solar arrays also have the potential to rotate to follow the sun over the day by installing a sun tracking system, Sun tracking systems can provides a 30% or more boost to the PV system performance.

Pole Mount for Solarex Modules

Pole Mounted PV

Roof Integrated PV If you are doing new construction or a reroofing job, it is possible to make the roof itself a solar PV collector. This saves the cost of the roof itself, and offers a more aesthetic design. The new roof can be shingled or look like metal roofing. A few examples follow.

Solar Roofing Shingles

Roof Integrated Photovoltaics in Misawi, Japan

Roof Integrated PV in Japan

Roof Integrated PV in Maine

Roof Integrated Photovoltaic System in Colorado

Roof Integrated PV (objects below chimney are solar hot water collectors)

PV Installation in Planned Community in Germany