[4] Sylvestre Thiago de Barros, Braos Lucas Boscov, Batistella Fitho Felipe, et al. Scientia Horticulturae, 2019, 255: 153.
[6] Fernndez Sellers Marcos, Siesto Guillermo, Lozano-Tello Adolfo, et al. International Journal of Remote Sensing, 2022, 43(15-16): 6038.
[7] Xiao Pengnan, Qian Peng, Xu Jie, et al. Sustainability, 2022, 14(7): 4104.
[8] Longchamps Louis, Tisseyre Bruno, Taylor James, et al. Precision Agriculture, 2022, 23(6): 2407.
[10] Corbari C, Paciolla N, Charfi I B, et al. European Journal of Remote Sensing, 2022, 55(1): 388.
[11] Ren David D W, Tripathi Siddhant, Li Larry K B. Journal of Applied Remote Sensing, 2017, 11(1): 016006.
[13] Zubkova K I, Permitina L I, Chaban L N. Geodesy and Cartography, 2016, 906(13): 84.
[15] Hengl T, Heuvelink G B M, Stein A. Geoderma, 2004, 120(1-2): 75.
[16] Bendig Juliane, Bolten Andreas, Bennertz Simon, et al. Remote Sensing, 2014, 6(11): 10395.
[17] Bauer Alan, Bostrom Aaron George, Ball Joshua, et al. Horticulture Research, 2019, 6(1): 70.
[18] Edalat Mohsen, Naderi Ruhollah, Egan Todd P. Journal of Plant Nutrition, 2019, 42(18): 2310.
[25] Yu Fenghua, Bai Juchi, Jin Zhongyu, et al. Agronomy, 2022, 12(11): 2893.
[26] Charles Moriarty, Dave C Cowley, Tom Wade, et al. Archaeological Prospection, 2019, 26(1): 33.
[27] Kumar Shashi Bhushan, Kumar Madhukar, Kumar Ashok, Brajendra, et al. An Asian Journal of Soil Science, 2016, 11(1): 126.