References

1

G.James Collatz, J.Timothy Ball, Cyril Grivet, and Joseph A Berry. Physiological and environmental regulation of stomatal conductance, photosynthesis and transpiration: a model that includes a laminar boundary layer. Agric. For. Meteorol., 54(2-4):107–136, apr 1991. URL: https://www.sciencedirect.com/science/article/pii/0168192391900028, doi:10.1016/0168-1923(91)90002-8.

2

GJ Collatz, M Ribas-Carbo, and JA Berry. Coupled Photosynthesis-Stomatal Conductance Model for Leaves of C \textless sub\textgreater 4\textless /sub\textgreater Plants. Aust. J. Plant Physiol., 19(5):519, 1992. URL: http://www.publish.csiro.au/?paper=PP9920519, doi:10.1071/PP9920519.

3

Albert Porcar-Castell. A high-resolution portrait of the annual dynamics of photochemical and non-photochemical quenching in needles of Pinus sylvestris. Physiol. Plant., 143(2):139–153, oct 2011. URL: http://www.ncbi.nlm.nih.gov/pubmed/21615415 http://doi.wiley.com/10.1111/j.1399-3054.2011.01488.x, doi:10.1111/j.1399-3054.2011.01488.x.

4

G. Schaepman-Strub, M. E. Schaepman, T. H. Painter, S. Dangel, and J. V. Martonchik. Reflectance quantities in optical remote sensing-definitions and case studies. Remote Sens. Environ., 103(1):27–42, 2006. doi:10.1016/j.rse.2006.03.002.

5

Christiaan van der Tol, Micol Rossini, Sergio Cogliati, Wouter Verhoef, Roberto Colombo, Uwe Rascher, and Gina Mohammed. A model and measurement comparison of diurnal cycles of sun-induced chlorophyll fluorescence of crops. Remote Sens. Environ., 186:663–677, dec 2016. URL: https://www.sciencedirect.com/science/article/pii/S0034425716303649, doi:10.1016/j.rse.2016.09.021.

6

Wout. Verhoef and Nationaal Lucht- en Ruimtevaartlaboratorium (Netherlands). Theory of radiative transfer models applied in optical remote sensing of vegetation canopies. [publisher not identified], 1998. ISBN 9054858044. URL: https://library.wur.nl/WebQuery/wda/945481.

7

Nastassia Vilfan, Christiaan van der Tol, Onno Muller, Uwe Rascher, and Wouter Verhoef. Fluspect-B: A model for leaf fluorescence, reflectance and transmittance spectra. Remote Sens. Environ., 186:596–615, 2016. URL: http://dx.doi.org/10.1016/j.rse.2016.09.017, doi:10.1016/j.rse.2016.09.017.

8

XINYOU YIN, JEREMY HARBINSON, and PAUL C. STRUIK. Mathematical review of literature to assess alternative electron transports and interphotosystem excitation partitioning of steady-state C3 photosynthesis under limiting light. Plant, Cell Environ., 29(9):1771–1782, sep 2006. URL: http://doi.wiley.com/10.1111/j.1365-3040.2006.01554.x, doi:10.1111/j.1365-3040.2006.01554.x.

9

Xinyou Yin and Paul C. Struik. Crop systems biology as an avenue to bridge applied crop science and fundamental plant biology. In Proc. - 2012 IEEE 4th Int. Symp. Plant Growth Model. Simulation, Vis. Appl. PMA 2012, 15–17. IEEE, oct 2012. URL: http://ieeexplore.ieee.org/document/6524806/, doi:10.1109/PMA.2012.6524806.

10

C Van der Tol, J A Berry, P K E Campbell, and U Rascher. Models of fluorescence and photosynthesis for interpreting measurements of solar-induced chlorophyll fluorescence. J. Geophys. Res. Biogeosciences, 119(12):2312–2327, 2014.

11

C. Van der Tol, W. Verhoef, J Timmermans, A Verhoef, and Z Su. An integrated model of soil-canopy spectral radiances, photosynthesis, fluorescence, temperature and energy balance. Biogeosciences, 6(12):3109–3129, dec 2009. URL: www.biogeosciences.net/6/3109/2009/, doi:10.5194/bg-6-3109-2009.