Solar energy: what you need to know
Solar power is usable energy generated from the sun in the form of electric or thermal energy. Solar energy is captured in a variety of ways, the most common of which is with photovoltaic solar panels that convert the sun’s rays into usable electricity. Aside from using photovoltaics to generate electricity, solar energy is commonly used in thermal applications to heat indoor spaces or fluids. Residential and commercial property owners can install solar hot water systems and design their buildings with passive solar heating in mind to fully take advantage of the sun’s energy with solar technology.
Interested in benefiting from solar power? Solar panels are installed at three main scales: residential, commercial, and utility. Residential-scale solar is typically installed on rooftops of homes or in open land (ground-mounted) and is generally between 5 and 20 kilowatts (kW), depending on the size of a property. Commercial solar energy projects are generally installed at a greater scale than residential solar. Though individual installations can vary greatly in size, commercial-scale solar serves a consistent purpose: to provide on-site solar power to businesses and non-profits. Finally, utility-scale solar projects are typically large, several megawatt (MW) installations that provide solar energy to a large number of utility customers.
For some solar shoppers who may not be able to install solar on their property, community solar is a viable solar option that more directly connects utility-scale solar energy projects to residential consumers. As such, community solar farms are typically built in a central location as opposed to on any single customer’s property. Residential consumers can subscribe to a community solar project to receive many of the benefits of solar power without installing solar panels on their property.
How does solar energy work?
A solar panel (also known as a solar module) consists of a layer of silicon cells, a metal frame, a glass casing unit, and wiring to transfer electric current from the silicon. Silicon (atomic #14 on the periodic table) is a nonmetal with conductive properties that allow it to absorb and convert sunlight into usable electricity. When light hits a silicon cell, the light causes electrons in the silicon to be set in motion, initiating a flow of electric current. This is known as the “photovoltaic effect,” and it describes the general functionality of solar panel tech.
The science of generating electricity with solar panels boils down to this photovoltaic effect. It was first discovered in 1839 by Edmond Becquerel and can be thought of as a property of specific materials (known as semiconductors) that allows them to create an electric current when they are exposed to sunlight.
The photovoltaic process works through the following broad steps:
- The silicon photovoltaic solar cell absorbs solar radiation
- When the sun’s rays interact with the silicon cell, electrons begin to move, creating a flow of electric current
- Wires capture and feed this direct current (DC) electricity to a solar inverter to be converted to alternating current (AC) electricity
A brief history of solar power
In 1954, Bell Labs developed the first silicon photovoltaic cell. Although solar energy had previously been captured and converted into usable energy through various methods,only after 1954 did solar power begin to become a viable source of electricity to power devices over extended periods of time. The first solar cells converted solar radiation to electricity at an efficiency of 4 percent – for reference, many widely available solar panels today can convert sunlight to solar power at above 20 percent efficiency, a number constantly on the rise.
Although adoption of solar energy was slow at first, a number of state and federal incentives and policies contributed to driving down the cost of solar panels far enough to become more widely adopted. At this point, solar power accounts for enough capacity to power 11 million of the 126 million households in the country.
The cost of solar energy
Concurrent with an increase in solar panel efficiency, the cost of solar energy has fallen substantially. In the last decade alone, the cost of a solar panel installation fell over 60 percent, and many industry experts predict that prices will continue to fall in the years to come:
Additionally, depending upon where you live, several rebates or incentives for solar power may contribute towards lowering the cost of solar energy even further. Nationwide, the federal Investment Tax Credit (ITC) is one of the primary incentives available to anyone interested in solar energy, as it allows you to deduct 26 percent of the cost of installing a solar system from your federal taxes. This incentive won’t last forever – in 2021, the federal ITC steps down to 22%, and then goes away completely for residential solar installations in 2022.
Many states and utilities offer further incentives (such as net metering) in addition to the federal ITC, dropping the cost of solar power even further.
Solar energy is a renewable power source
Solar energy is a clean, inexpensive, renewable power source that is harnessable nearly everywhere in the world – any point where sunlight hits the surface of the earth is a potential location to generate solar power. And since solar energy comes from the sun, it represents a limitless source of power. Renewable energy technologies generate electricity from resources that are infinite. Compare, for instance, producing electricity with renewable resources to doing so with fossil fuels. It took hundreds of thousands of years for oil, gas and coal to form, so every time one of those resources are burned to create electricity, that finite resource is moved marginally closer to depletion. Using a renewable resource – such as wind, solar and hydropower – to generate electricity, does not deplete that resource. There will always be consistent sunlight shining on Earth’s surface, and after turning sunlight into electricity, there is still an infinite amount of sunlight to turn into electricity in the future. That is what makes solar power, by nature, renewable energy.
While the current electricity mix in the United States is still made up largely of fossil fuels like oil and gas, renewable energy sources like solar are steadily becoming a larger part of the country’s energy profile. As the cost of solar and other renewable technologies continues to be competitive.
Solar energy + battery storage, electric vehicles and more
The rapid proliferation of solar power nationwide and globally has also led to parallel growth in several adjacent areas. Notably, energy storage systems and electric vehicles are two sectors poised to explode alongside solar power by augmenting the benefits of solar.
Given that solar panels can only produce power when the sun is shining, storing produced but unused energy throughout the day for use at a later time has become increasingly important. For instance, solar batteries store electricity and can be drawn on during periods of low solar production. What’s more, solar-plus-storage solutions work for all scales of solar panel installations and provide many added benefits, from energy reliability to grid resiliency and lower-cost power.
Electric vehicles are a second product poised to ride the wave of solar energy adoption. With lower maintenance costs, lower fuel costs, and a lower environmental footprint than traditional internal combustion engine vehicles, electric vehicles are set to be an important piece of the automobile industry for years to come. With increasing electric vehicle adoption also comes a growing need for electricity to run the vehicles, a perfect fit for solar energy. Distributed solar installations provide cheap and reliable power for electric vehicles directly from the sun. In a world of increased electrification throughout the home, solar power is one of the most inexpensive, reliable, and cleanest ways to fuel our electrified future.
Solar Power System
SOLAR POWER SYSTEM
Solar power system works on basic principles of energy conversion – conversion of light energy (in case of Solar PV system) to electric energy or conversion of Heat energy (in case of Solar Thermal system)
HOW A PV SOLAR POWER SYSTEM WORKS:
A Photovoltaic (PV) Solar power system consists of many solar Photovoltaic Panels called modules. Each of these panels have PV cells arranged in an array. Each PV cell comprises of two layers of semiconductors, commonly made of silicon. Each of these layers are doped with different materials such as Boron and Phosphorous. When the cell is connected to positive and negative sides forming an electrical circuit and when light energy strikes the cell, electrons from the electron rich layer is knocked off from the atoms and flows to the electron deficient layer. Thus, an electric field is created between the layers producing the DC current.
This DC current is then converted into AC current using inverters. A typical solar power system uses this AC current to run the basic load (equipment & appliances). Any excess power generated can either be fed back to the grid or stored in battery.
EVERYTHING ELSE ONE NEEDS TO KNOW ABOUT A SOLAR POWER SYSTEM:
Due to the intermittent nature of power in case of renewable energy, one would always need a primary source of power integrated with the solar system. Hence, a solar power system can be of three types: Stand alone, Grid Connected and Hybrid.
1.Standalone system: The system is connected to DG set that acts as the primary source of power.
2.Grid connected system: The solar system is connected to the grid and synced with it.
3.Hybrid system: The system is connected to both the DG set and the Grid.
A typical solar power system of 100 KW requires 1200 square metres of shade-free area. This 100 KWp of solar power plant located in India will produce approximately 1,40,000 units of electricity annually. This solar power system (of 100 KW) today costs about INR 50,00,000 to INR 70,00,000 to install. Setting up of a 100 KW of power.
The size of the solar power system depends upon various factors such as the amount of sunlight the system receives, power consumption or load requirement, and regulatory policies of a particular state in which the system is located in. As a common practice, south-facing modules are mounted on the roof to get the maximum generation.
Find Out How Solar Power Works
Solar power works by converting light from the sun into electricity. This electricity can then be used in your home or exported to the grid when it’s not needed. This is done by installing Solar Panels on your roof which generate DC (Direct Current) electricity. This is then fed into a solar inverter which converts the DC electricity from your solar panels into AC (Alternating Current) electricity.
- Your solar cells produce electricity via the photovoltaic effect, where sunlight creates electricity in certain materials by knocking their outer electrons loose.
- The DC electricity generated by your solar panels is directed to your central inverter (or micro inverter, depending on your system set up), where it is converted into AC electricity your home and appliances can use.
- Your inverter will ensure your home always uses your own solar production first, only accessing additional energy from the grid when your own supply is not enough. Any solar energy you don’t use will be exported the grid for a nominated feed-in tariff.
- Your electricity retailer will install a new bi–directional meter which will monitor and report both the incoming and outgoing electricity.
- Your electricity bills will then take into account the lower amounts of electricity you will need to buy from the grid plus credits for the electricity generated by your solar power system that you don’t use.
With solar power, you don’t need to switch it on in the morning or switch it off at night – the system will do this seamlessly and automatically. You don’t need to switch between solar power and the grid – the system does this all automatically so you won’t notice any change to how the appliances in your home function. In fact a solar system requires very little maintenance (as there are no moving parts) which means you’ll hardly know it’s there. This also means a good quality solar power system will last a long time.
Your solar inverter (usually installed in your garage or in an accessible spot), can provide you with information like the amount of electricity being produced at any particular point in time or how much it has generated for the day or in total since it has been operating. Many quality inverters feature wired or wireless connectivity and sophisticated on-line monitoring and reporting.
If it seems complicated, don’t worry; one of Infinite Energy’s Solar Power Consultants will guide you through the process of how solar power works either by phone, email or via a no obligation home consultation.