Conversion Process Of Dc To Alternating Current And How That Relates To Solar Farm Investment

Whenever discussing a solar farm project you will need to understand the difference between alternating current (AC) and DC (direct current) voltage. Solar power electrical nameplate voltage is designated as DC (direct current). Electric utility company line voltage is designated as alternating current (AC). In rare cases utility company line voltage can be designated as direct current.

Since solar power panels are specified in direct current, and electric utility programs are in AC (alternating current), it is important to discover how to translate dc into alternating current (AC). The general rule of thumb is to multiply the total direct current (DC) watts by 85% to arrive at AC (alternating current) level.

In California there are many programs that solar farms can participate in. After much study, Commercial Solar Design has discovered that the 2 most productive solar farm sizes are three megawatt and 20 megawatt. California legislation provides solar farm projects up to 3MW alternating current (AC) with a guaranteed interconnection or a must-buy for investor-owned electric utilities. Another program; a reverse auction mechanism (RAM) allows for solar farms all the way to 20 megawatts AC.

Whenever you are thinking about a solar farm you must decide on whether to use a fixed ground mount or single axis tracker solar panel array. Commercial solar design encourages single axis tracker layouts because the higher expense of single-axis tracker is canceled out by the additional income generated. The solar farm investment community is interested in maximizing development return on investment that single axis trackers produce.

One must take into consideration land use regarding solar farms. A 1 megawatt block AC (alternating current) using single axis trackers on flat property in Central California would be roughly 805 ft long by 392 ft wide. Should you include multiple MW blocks, spacing, maintenance roads, setbacks along with other factors, 1MW AC (alternating current) uses up somewhere around 7 acres.

While thinking about a solar farm investment you should focus on land and dimensions to allow for either a 3MW or 20MW AC (alternating current) solar farm venture. This equals either a 21 acre or 140 acre parcel.

The next consideration regards conditional use permitting (CUP). The majority of sites will not be appropriate for solar farm projects resulting from numerous aspects including;

town questions, Williamson Act, area is blanketed with trees and permit won't be issued for clear cutting, land is within a 100 yr floodplain, deficiency of a provision for solar farms within a general plan, too little capacity on established electricity lines, too remote to access the existing power lines, an area already saturated with photovoltaic electrical power, not situated in an IOU territory, and a lot of other issues. Commercial Solar Design focuses solar farm projects and can assist you decide if your solar farm project is realistic.

Should you think you have a parcel well suited for solar farming, right now is an excellent moment in time to acquire moving on organizing your project. However solar farms aren't inexpensive. A solid solar farm investment could possibly return fifteen percent and up. There is actually a Federal grant to cover 30% of the project's total expense. The balance is divided between 35 % equity position and 35 percent loans. Commercial Solar Design has developed a very interesting program for landowners who were not in a position to offer 35% equity. Opportunities are readily available but you must proceed quickly to take advantage prior to when other people fill the capacity allotted to solar farm projects.

Controversy Concerning The Williamson Act As Relating To Solar Farm Investment And How It Relates To CUP
For solar farm investment to move forward there are several ways that a solar energy generation facility could possibly be constructed inside an agricultural preserve or on property constrained by the Williamson Act contract.

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The state of California conducted a solar resource assessment and found that the solar farm potential, is over 16,000,000 MW. Put another way, California requires less than 1% (0.32%) of its land dedicated to solar farm generators to achieve self-sufficiency from solar farm sites.

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