Close Menu
  • News
  • Industry
  • Solar Panels
  • Commercial
  • Residential
  • Finance
  • Technology
  • Carbon Credit
  • More
    • Policy
    • Energy Storage
    • Utility
    • Cummunity
What's Hot

Dutch solar owners asked to switch off during peak periods to ease the distribution crisis

June 7, 2026

The hydrogen flow: Toyota demonstrates its racing prototype on liquid hydrogen

June 7, 2026

Era of electrification exposing Australia’s weakest link

June 6, 2026
Facebook X (Twitter) Instagram
Facebook X (Twitter) Instagram
Solar Energy News
Sunday, June 7
  • News
  • Industry
  • Solar Panels
  • Commercial
  • Residential
  • Finance
  • Technology
  • Carbon Credit
  • More
    • Policy
    • Energy Storage
    • Utility
    • Cummunity
Solar Energy News
Home - Technology - How to assess Bifacial PV system performance in sloping sites – PV Magazine International
Technology

How to assess Bifacial PV system performance in sloping sites – PV Magazine International

solarenergyBy solarenergyMay 15, 2025No Comments4 Mins Read
Facebook Twitter Pinterest LinkedIn Tumblr Email
Share
Facebook Twitter LinkedIn Pinterest Email

Scientists have developed a precursor formulation for various PV simulation tools that can help calculate the expected performance of solar farms on hilly slopes. Validation tests against an experimental setup showed a mistake of less than 3%.

May 15, 2025
Lior Kahana

Researchers from the East West University of Bangladesh have developed a new method for analyzing bifacial PV systems in sloping sites. The new technology is a precursor that is then inserted in existing PV simulation models that do not explain hilly solar farms.

“The proposed method includes the recalculation of the solar path and the irradiation (direct and diffuse) to that of ‘seen from a sloping surface’ and these values ​​in a conventional PV model. The updated inputs ensure that the overall outputs are the results for a PV -Array, the studies. “We are therefore able to design and analyze PV farms for every slope and orientation without reformulating another part of the existing PV models.”

The technology consists of three parts: the modeling of the solar path on a certain hill; the correction of the sunlight values; And the integration into existing models. In the first step, the global coordinate is rotated together with the orientation and corner of the slope. This process yields a modified solar path from the point of view of the tilted surface.

In the second step, the diffuse horizontal radiation (DHI) is reduced based on the viewing factor of the slope in the sky, while the direct normal irradiation (DNI) remains as it is. The new DHI value is responsible for the limited exposure to the air of the hilly surface. In the last step, the corrected incidence and sun corners are inserted into available PV models, which they treat as flat soil.

See also  Fraunhofer ISE unveils rotary printing technique for heterojunction solar cell metallization – SPE

The team has validated their model in a few ways. In most cases, self-validation found an error of a maximum of 2% and benchmarking against the PVsyst software, which can take into account sloping trees, has yielded comparable results. Finally, the team also built a small -scale experimental setup, including a monofacial array of a panel placed on a hill on the east with a slope of 20 °. The panels were placed flat against the slope, at a height of 51.5 cm and a width of 28.5 cm.

Monthly average energy -output

Image: East West University, Energy Conversion and Management: X, CC by 4.0

“This experiment was carried out on the roof of East West University, Dhaka (23.8Z, 90.4Ze) for 10 days of February-March 2022. The output was measured every 2 minutes from 6.30 am to 6:00 pm, then integrated over the day to get the daily energy output,” the team explained “.Lobal HOrizontal I.Radiance (GHI) as an input for the combined model to simulate the output of the same configuration and location. The comparison between the energy output of our combined model and it showed a daily error of less than 3%from the experiment. “

Finally, the team demonstrated their model, using their precursor formulation with the PV-maps simulation software. They tested an angle of 20 °, on a hill with North, South, East or West. The panel, monofacial or bifacial, was mounted parallel to the slope. In the bifacial simulation they adopted a bifaciality of 1 (unit) and an albedo of 0.2. All panels had an efficiency of 16.8%, with panel height and luminaire height of one meter.

See also  New laboratory-sized slot-mold coater for thin film PV – SPE

The analysis showed that the Bifacial PV system yields a higher output, as expected, with the annual energy of the bifacial PV systems on different hills ranging between 211,33 and 290.45 kWh/m2/year and the monofacial PV system that is taken from 187.18 to 259,72 KWH/year….

“In general, the developed model simplifies the implementation of numeric models for bifacial panelarrays on sloping terrain. The models for mono/bifacial farms, mono/bifacial (single junction and tandem) tracking farms, and agrivoltaics systems can now be refunded for cortemes systems -Surfaces for predictions and analysis, “the team concludes.

The new approach was presented in “Modeling of every Bifacial solar panel Array configuration in the helly site: generalization using a precursor formulation“Published in Energy conversion and management: X.

This content is protected by copyright and may not be reused. If you want to work with us and reuse part of our content, please contact: editors@pv-magazine.com.

Popular content

Source link

assess bifacial International magazine performance sites sloping system
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email
solarenergy
  • Website

Related Posts

The U.S. International Trade Commission is expanding tariffs on Chinese and Taiwanese solar imports

May 29, 2026

Storing sustainable energy with compressed air in district heating pipelines – SPE

May 26, 2026

Spanish grid operator validates tower resistance to cascade failures – SPE

May 26, 2026
Leave A Reply Cancel Reply

Don't Miss
Finance

Livoltek about the flexibility of small energy storage systems for solar energy

By solarenergyJuly 25, 20250

Solar has many advantages. It is renewable, relatively easy to install and can be positioned…

The UN carbon credit market has significant development potential

May 27, 2024

‘Typhoon-proof’ offshore PV project nears completion in China – SPE

November 14, 2024

The best hole transport layers for perovskite solar cells – SPE

January 7, 2025
Stay In Touch
  • Facebook
  • Twitter
  • Pinterest
  • Instagram
  • YouTube
  • Vimeo
Our Picks

Dutch solar owners asked to switch off during peak periods to ease the distribution crisis

June 7, 2026

The hydrogen flow: Toyota demonstrates its racing prototype on liquid hydrogen

June 7, 2026

Era of electrification exposing Australia’s weakest link

June 6, 2026

‘Come out from behind your screen, our industry is ultimately about people’

June 6, 2026
Our Picks

Dutch solar owners asked to switch off during peak periods to ease the distribution crisis

June 7, 2026

The hydrogen flow: Toyota demonstrates its racing prototype on liquid hydrogen

June 7, 2026

Era of electrification exposing Australia’s weakest link

June 6, 2026
About
About

Stay updated with the latest in solar energy. Discover innovations, trends, policies, and market insights driving the future of sustainable power worldwide.

Subscribe to Updates

Get the latest creative news and updates about Solar industry directly in your inbox!

Facebook X (Twitter) Instagram Pinterest
  • Contact
  • Privacy Policy
  • Terms & Conditions
© 2026 Tsolarenergynews.co - All rights reserved.

Type above and press Enter to search. Press Esc to cancel.