Solar panels or modules are usually placed on the roof or ground or in the backyard of a house where there is plenty direct sunlight to fall on them. Solar panels are flat and square or rectangle shaped sheets made of crystal structures called solar cells or photovoltaic cells. These special crystal structures absorb the sunlight and convert it into home solar power. They do this because when the cells are struck by sunlight, electrons in their composition are dislodged and so they create electrical current or home solar power. This home solar power when it is used as electricity it is sent to a power inverter which will convert the DC power the cells create into the AC power most electronic appliances use. This already converted home solar power is then sent to an electrical panel that will distribute the power trough out the house.
When excess home solar power is produced, the panel has a meter which monitors your consumption and gains you a credit with your utility company. The utility grid will then automatically supply you with extra power for your home when you'll need it. These are the basics of how home solar power is generated.
If you're interested in generating your own home solar power for your needs then you should know that there are many possibilities of mounting panels on your roof or pretty much anywhere around your property. Solar panels for home solar power generation can be mounted on any kind of roof, or they can be placed on the ground and tilted toward the sunlight. There is also the option of pole mounting which is very easy and simple to install, and these poles can be strategically placed and can also be shifted to take full advantage of the sun throughout the day. The latest and most popular type of panels used to generate home solar power are the building integrated system. Even the White House has panels of this sort that are not visible.
Also there are more and more developers and builders that are starting to build homes with integrated home solar power systems. These are particularly found in states like California, Nevada or Florida where there is a lot of sunlight and where people are more inclined toward eco-friendliness and toward buying homes with a home solar power system. Although these will cost a bit more initially, a home solar power system will prove to be helpful in the long run.
The people that choose homes with a home solar power system in place will often want for their home to be built with renewable, natural and locally produced materials. There is conscious effort to choose materials that are safe and non-toxic to produce and use. Although this field of building materials is steadily growing and new products are introduced every day, finding green building materials is still a challenge, and it will require much more research than a trip to the local hardware store.
Purchasing solar panels will be a great way to contribute to a greener environment, and it will also provide a renewable energy source for your family. The potentially lower energy costs will also be a great reason to choose to install a home solar power system for your home and family.
Home Solar Power Generation
On the other hand, this article digs into the details and explains how kilowatts (kwh) are calculated. Energy output from solar cells is based upon the total power generated by your solar array. The content provided here will also walk through the differences in the construction of solar panels tied together in parallel versus solar panels connected in series.
The average American home uses about 25 kWh of electricity per day. The following example illustrates how to calculate the power produced by a residential solar energy system. Looking over a solar radiation grid, we can determine that a residence gets five daylight hours of solar radiation in one day which is then averaged out over the entire year.
Solar radiation maps are highlighted on may websites throughout the Internet. You can do a quick search for "solar radiation" to find one. They essentially plot the amount of sunlight based upon time of year and physical location that will hit the United States in any given area.
Calculating the power from a solar energy system
Divide the average kWh per day by the average sun hours per day. For this example, we take 25 kWh divided by 5 hours of sun per day = 5 kW system This 5 kW system will generate 25 kWhs under optimal conditions in direct sunlight for 5 hours, or 25 kWh on an average day with some at peak production and most of the sunlight at less than optimal angles.
Future articles related to solar energy will continue to explain the effects of sun angle, reflection, and refraction on the design, output, and installation of solar panels.
Energy as it Pertains to Solar Modules
Individual solar modules that are measured in watts have a particular voltage (around 40 volts) and a particular amperage (around 5 amps). A solar module with 40 volts and 5 amps is called a 200-watt module, which means that it has the potential to produce 200 watts of electricity when in direct sunlight, away from trees or shading, and clear of snow or debris. Since most electrical components around your house are only rated for 600 volts DC, it is rare to see a solar array with a string larger the 15 solar modules. On the other hand, since inverters need a minimum voltage or pressure to turn them on, you will seldom have a solar array with a string solar modules with a size smaller then 6.
Electrical components, like solar cells, panel modules or batteries, can be connected in either series or parallel. This makes a big difference in the total quantities of energy produced from the solar energy system, as well as the stability of the technology over time. Each solar module or component has a positive and a negative pole. In essence, this is the same way batteries have their negative and positive poles arranged. Take a look at how you but batteries in a flashlight. Same idea here. The manner in which these poles are connected makes a big difference. Connect Solar Panels in Series
When you connect residential solar energy systems in series, you connect the positive (+) pole on one component to the negative (-) pole on the next. When modules are connected in series, the voltages are added. Adding voltage together in this fashion creates a long chain of solar modules all working together, depending upon each other, and creating a flow of current that increases along the length of the system.
These modules in series are called Strings. The average string is 8-12 modules so the voltage would be 320 - 480. Unfortunately, we encounter some negative aspects of of this type of construction.
Connecting Solar Panels in Parallel
When you connect solar panels or components in parallel, you connect the panels so current can travel to your inverter and to your house via multiple paths. Unlike adding solar modules in series which increases the volume of current as it goes, the solar panels connected in parallel has the effective of leaving the current or volume of electricity passing through the system the same.
When solar modules or strings of solar modules are connected together in Parallel, the amps are added but the voltage stays the same. Adding amps is like increasing the volume, the pressure stays the same but the volume goes up. Inverters can only handle so much volume so you will seldom see more than 1 to 3 strings in parallel; positive (+) poles to positive (+) poles, and negative (-) poles to negative (-) poles.
One of the advantages of parallel connection is that electricity continues to flow, even though one of the components (or strings) is damaged. If a system is entirely in series, one damaged component stops the entire system. You may remember the ever-frustrating Christmas lights that were connected in series. The entire string went out if one light blew and it was often difficult to trouble shoot to find the faulty bulb. Now, the modern Christmas lights are connected in parallel. You are able to determine this easily. There are usually two different wires coming in and out of each bulb. You can feel this via their less frustrating maintenance and operation.
Options for Residential Solar Energy Systems
In this article, we explained in some detail how solar modules calculate the power they produce as well as how connecting solar arrays in series or parallel can have an large impact on energy output as well as complexity of design. Our next article will cover how sun angle affects solar energy systems and how to quantify the solar power produced from the sun.
New solar energy system rentals allow you to upgrade your home to solar generated electricity with no large system to purchase. You can rent the solar energy equipment needed to generate up to 100 percent of your electricity needs. Exciting aspects related to clean, green solar energy are emerging all around us.
Both Grojan Fabiola & Daniel Stouffer are contributors for EditorialToday. The above articles have been edited for relevancy and timeliness. All write-ups, reviews, tips and guides published by EditorialToday.com and its partners or affiliates are for informational purposes only. They should not be used for any legal or any other type of advice. We do not endorse any author, contributor, writer or article posted by our team.
Daniel Stouffer has sinced written about articles on various topics from Blogging, Health and Entrepreneurship. At Solargies (Solar Energies), our objective is to spread the adoption of renewable solar energy as rapidly as possible. Daniel Stouffer is writer and promoter of green energy. Learn about Renting your own Solar Energy system at: =>. Daniel Stouffer's top article generates over 27100 views. Bookmark Daniel Stouffer to your Favourites.
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