@@ -69,7 +69,6 @@ References
69
69
for PV research Sandia National Laboratories, ALbuquerque, NM, USA, Rep.
70
70
SAND2023-02045, 2023. Available:
71
71
https://datahub.duramat.org/dataset/module-sr-library
72
-
73
72
.. [2 ] R. Daxini and Y. Wu, "Review of methods to account for the solar
74
73
spectral influence on photovoltaic device performance," Energy,
75
74
vol. 286, p. 129461, Jan. 2024. :doi: `10.1016/j.energy.2023.129461 `
@@ -91,7 +90,7 @@ References
91
90
Canada, 2020, pp. 1–6. :doi: `10.1109/PVSC45281.2020.9300932 `
92
91
.. [7 ] H. Thomas, S. Tony, and D. Ewan, “A Simple Model for Estimating the
93
92
Influence of Spectrum Variations on PV Performance,” pp. 3385–3389, Nov.
94
- 2009, :doi: 10.4229/24THEUPVSEC2009-4AV.3.27
93
+ 2009, :doi: ` 10.4229/24THEUPVSEC2009-4AV.3.27 `
95
94
.. [8 ] IEC 60904-7:2019, Photovoltaic devices — Part 7: Computation of the
96
95
spectral mismatch correction for measurements of photovoltaic devices,
97
96
International Electrotechnical Commission, Geneva, Switzerland, 2019.
0 commit comments