1 |
Current limiter circuit to avoid photovoltaic mismatch conditions including hot-spots and shading Dhimish M, Badran G Renewable Energy, 145, 2201, 2020 |
2 |
Bypass diode effect on temperature distribution in crystalline silicon photovoltaic module under partial shading Mohammed H, Kumar M, Gupta R Solar Energy, 208, 182, 2020 |
3 |
Reduction of mislead power and mismatch power loss under partial shading conditions using novel square matrix shade dispersion technique Manjunath, Suresh HN, Rajanna S Solar Energy, 207, 1364, 2020 |
4 |
Effect of high-velocity sand and dust on the performance of crystalline silicon photovoltaic modules Shi CY, Yu B, Liu DP, Wu YP, Li PZ, Chen GY, Wang GH Solar Energy, 206, 390, 2020 |
5 |
A bypass circuit for avoiding the hot spot in PV modules Guerriero P, Tricoli P, Daliento S Solar Energy, 181, 430, 2019 |
6 |
A novel electrical approach to protect PV modules under various partial shading situations Hanifi H, Pander M, Jaeckel B, Schneider J, Bakhtiari A, Maier W Solar Energy, 193, 814, 2019 |
7 |
Detailed modeling of large scale photovoltaic power plants under partial shading conditions Robles-Campos HR, Azuaje-Berbeci BJ, Scheller CJ, Angulo A, Mancilla-David F Solar Energy, 194, 485, 2019 |
8 |
Development of a real-time hot-spot prevention using an emulator of partially shaded PV systems Bressan M, Gutierrez A, Gutierrez LG, Alonso C Renewable Energy, 127, 334, 2018 |
9 |
Simulation, validation and analysis of shading effects on a PV system Gallardo-Saavedra S, Karlsson B Solar Energy, 170, 828, 2018 |
10 |
Electric and thermal characteristics of photovoltaic modules under partial shading and with a damaged bypass diode Ko SW, Ju YC, Hwang HM, So JH, Jung YS, Song HJ, Song HE, Kim SH, Kang GH Energy, 128, 232, 2017 |