References

  1. S. Schindele, M. Trommsdorff, A. Schlaak, T. Obergfell, G. Bopp, C. Reise, C. Braun, A. Weselek, A. Bauerle,
    P. Högy, A. Goetzberger, E. Weber, Implementation of agrophotovoltaics: techno-economic analysis of the price-performance ratio and its policy implications, Appl. Energy, 265 (2020) 114737, doi:10.1016/j.apenergy.2020.114737.
  2. A. Goetzberger, A. Zastrow, On the coexistence of solar-energy conversion and plant cultivation, Int. J. Sol. Energy, 1 (1982) 55–69.
  3. C. Dupraz, H. Marrou, G. Talbot, L. Dufour, A. Nogier, Y. Ferard, Combining solar photovoltaic panels and food crops for optimising land use: towards new agrivoltaic schemes, Renewable Energy, 36 (2011) 2725–2732.
  4. S. Amaducci, X. Yin, M. Colauzzi, Agrivoltaic systems to optimise land use for electric energy production, Appl. Energy, 220 (2018) 545–561.
  5. H. Marrou, L. Guilioni, L. Dufour, C. Dupraz, J. Wery, Microclimate under agrivoltaic systems: is crop growth rate affected in the partial shade of solar panels, Agric. For. Meteorol., 177 (2013) 117–132.
  6. G.A. Barron-Gafford, M.A. Pavao-Zuckerman, R.L. Minor, L.F. Sutter, I. Barnett-Moreno, D.T. Blackett,
    M. Thompson, K. Dimond, A.K. Gerlak, G.P. Nabhan, J.E. Macknick, Agrivoltaics provide mutual benefits across the food–energy–water nexus in drylands, Nat. Sustainability, 2 (2019) 848–855.
  7. P. Santra, P. Pande, S. Kumar, D. Mishra, R.K. Singh, Agrivoltaic system: crop production and
    photovoltaic-based electricity generation from a single land unit, Indian Farm., 68 (2018) 20–23.
  8. S. Touil, A. Richa, M. Fizir, B. Bingwa, Shading effect of photovoltaic panels on horticulture crops production:
    a mini review, Rev. Environ. Sci. Biotechnol., 20 (2021) 281–296.
  9. Essam. Evaluation of Agrophotovoltaic Technical and Economic potential in Egypt including Optimization of System Technology and Harvest, 2014. Available at: https://dokumen. tips/documents/by-ramy-essam-uni-kassel-by-ramy-essamramyessamhotmailcom- june-18-2014.html
  10. T. Obergfell, Agrovoltaik – Land wirtschaft unter Photovoltaikanlagen. Eine Machbarkeitsstudie für den Standort Deutschland. Agrovoltaic – Agriculture Under Photovoltaic Facilities. A Feasibility Study for Germany, Master Thesis, University of Kassel, 2012.
  11. V.S. Chulz, S. Munz, K. Stolzenburg, J. Hartung, S. Weisenburger, S. Graeff- Hönninger, Impact of different shading levels on growth, yield and quality of potato (Solanum tuberosum L.), Agronomy, 9 (2019) 330, doi:10.3390/agronomy9060330.
  12. M. Beck, G. Bopp, A. Goetzberger, T. Obergfel, C. Reise, S. Schindele, Combining PV and food crops to agrophotovoltaic – optimization of orientation and harvest, EUPVSEC Proc., 1 (2012) 4096–4100.