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References
Sistema solar comercial con SMA

Cattle Ranch Beefs Up Savings with Solar Energy

Argentina’s first solar energy plant for self-consumption earns attention!

by Trish Moratto (guest post), 29. Apr. 2020, 2 Comments
References
Battery Use for Peak Shaving Using the battery for peak shaving—in other words, for limiting the feed-in power—is not an argument against small storage sizes either. SMA's research shows that in typical PV systems with internal household consumption, 2 kWh of usable capacity are sufficient in minimizing losses due to capping of feed-in power at 70 percent of installed PV power (required under Section 6 of the Renewable Energy Sources Act). Additionally, if battery storage is connected to a smart energy management system that uses generation and consumption predictions, peak shaving does not limit increases in self-consumption in practice. Thus, the battery can be deliberately charged at times of large power surpluses and discharged again as soon as consumption in the house exceeds current PV power. In the event that feed-in power is capped at 60 percent of installed power, as is envisioned in the recently launched incentive program for PV storage, then (for typical south-facing orientations) somewhat larger storage capacity will naturally be needed for optimal use of the energy supply. However, in the case of an orientation that is not completely optimal or of an east-west generator, a system with only 2 kWh capacity can meet the 60 percent criterion and still use almost all of the PV energy that accrues. The same is true in the case of particularly high power consumption with flexible timing, such as occurs in electric heating of household water by means of a heating cartridge or heat pump. In individual circumstances, the ideal usable storage capacity depends on many additional parameters, such as cyclical charging that deviates from the generation and load profile, or the battery technology that is used. If lead batteries are used or if there is a desire for a backup electricity supply in case of a power outage, then larger storage batteries definitely make sense too. For typical household applications (2,500 to 7,000 kWh per year, with PV generation at the same scale) and for lithium-ion batteries, however, the most economical size is about 2 kWh, and therefore significantly below the capacity of common storage solutions on the market. Sensible Self-supply When combined with smart energy management and a small storage system, ideally designed PV systems can supply more than 50 percent of households with inexpensive electricity that is produced in a maximally environmentally friendly way, with costs that can be calculated and that are stable for years on end. In addition they are extremely well prepared for new smart grid business models (participation in virtual power plants, supply of storage services) that will come up during the systems' service life of at least twenty years.

Solar Spotlight: Naghtaneqed School Graduates to a Cleaner, Quieter Campus

Hakai Energy Solutions Delivers a Solar Hybrid Integration Project for Students in Canada! The Naghtaneqed Elementary School sits nestled in...

by Trish Moratto (guest post), 2. Apr. 2020, 0 Comments
References
Sunny Tripower CORE1 project

Solar Spotlight: Sustainability is at the CORE of Spraying Systems’ Values and Business Strategies

GRNE Solar recently installed a new solar system powered by SMA Sunny Tripower CORE1 inverters and monitored with the SMA...

Alexandra Alejandroby Alexandra Alejandro, 22. May. 2019, 7 Comments
References
Automatic Backup Unit from SMA

Solar Spotlight: Back Off Gas-Powered Generators, A New Backup is in the House!

A New Jersey family will no longer need gas-powered generators during outages. The installation of SMA’s Sunny Boy Storage with...

Alexandra Alejandroby Alexandra Alejandro, 9. May. 2019, 0 Comments
References
Solar Spotlight: From Net-Metering to Zero-Export With Sunny Boy Storage

Solar Spotlight: From Net-Metering to Zero-Export With Sunny Boy Storage

The SMA Sunny Boy Storage offers an AC coupled architecture, enabling installation at any point in time. This provides greater...

Alexandra Alejandroby Alexandra Alejandro, 6. Mar. 2019, 16 Comments
References

SMA Repowering Brings Utility PV Plant Impacted by Hurricane Maria Back in Business

The 2017 Atlantic hurricane season was the costliest and deadliest on record. Hurricane María, a category five storm, was especially...

Alexandra Alejandroby Alexandra Alejandro, 13. Feb. 2019, 0 Comments
References
Solar Spotlight: False Bay School Goes Solar With the Best in Class

Solar Spotlight: False Bay School Goes Solar With the Best in Class

Diesel generators that ran for 12 hours a day powered the school located on Lasqueti Island in British Columbia, Canada,...

Alexandra Alejandroby Alexandra Alejandro, 6. Feb. 2019, 0 Comments
References
Solar Spotlight – Islas Secas: Unmatched Sustainable Tourism Model in Panama

Solar Spotlight – Islas Secas: Unmatched Sustainable Tourism Model in Panama

Sustainability and stewardship are noticeable in the facilities, infrastructure and operation of Islas Secas Reserve & Lodge, where visitors enjoy...

Alexandra Alejandroby Alexandra Alejandro, 15. Jan. 2019, 0 Comments
References
Solar Spotlight: Utility Solar Project in Riverside County, California, will Have Enormous Impact on Preservation of Natural Resources

Solar Spotlight: Utility Solar Project in Riverside County, California, will Have Enormous Impact on Preservation of Natural Resources

Sunpin Solar, who earned Solar Power World’s distinction as a 2018 Top Five Solar Developer in the United States, constructed...

Alexandra Alejandroby Alexandra Alejandro, 27. Nov. 2018, 0 Comments
References

Solar Spotlight: Pistachio and Almond Grower Invests in Solar for a Harvest of Savings

The ground-mounted system installed by JKB Energy located in Kettleman City, California, is the second largest net-metered solar project in...

Alexandra Alejandroby Alexandra Alejandro, 29. Oct. 2018, 0 Comments
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