[1] |
王利珍, 谭洪卫, 庄智, 等. 基于GIS平台的我国太阳能光伏发电潜力研究[J]. 上海理工大学学报, 2014, 36(5): 491-496.
|
|
[Wang Lizhen, Tan Hongwei, Zhuang Zhi, et al. Evaluation of the photovoltaic solar energy potential in China based on GIS platform[J]. Journal of Shanghai University of Technology, 2014, 36(5): 491-496. ]
|
[2] |
韩梦瑶, 熊焦, 刘卫东. 中国光伏发电的时空分布、竞争格局及减排效益[J]. 自然资源学报. 2022, 37(5): 1338-1351.
doi: 10.31497/zrzyxb.20220516
|
|
[Han Mengyao, Xiong Jiao, Liu Weidong. Spatio-temporal distribution, competitive development and emission reduction of China’s photovoltaic power generation[J]. Journal of Natural Resources, 2022, 37(5): 1338-1351. ]
doi: 10.31497/zrzyxb.20220516
|
[3] |
Alami Merrouni A, Elwali Elalaoui F, Ghennioui A, et al. A GIS-AHP combination for the sites assessment of large-scale CSP plants with dry and wet cooling systems. Case study: Eastern Morocco[J]. Solar Energy, 2018, 166: 2-12.
|
[4] |
Vrinceanu A, Dumitrascu M, Kucsicsa G. Site suitability for photovoltaic farms and current investment in Romania[J]. Renewable Energy, 2022, 187: 320-330.
|
[5] |
Ruiz H S, Sunarso A, Ibrahim-Bathis K, et al. GIS-AHP multi criteria decision analysis for the optimal location of solar energy plants at indonesia[J]. Energy Reports, 2020, 6: 3249-3263.
|
[6] |
Noorollahi Y, Ghenaatpisheh Senani A, Fadaei A, et al. A framework for GIS-based site selection and technical potential evaluation of PV solar farm using Fuzzy-Boolean logic and AHP multi-criteria decision-making approach[J]. Renewable Energy, 2022, 186: 89-104.
|
[7] |
Hassaan M A, Hassan A, Al-Dashti H. GIS-based suitability analysis for siting solar power plants in Kuwait[J]. The Egyptian Journal of Remote Sensing and Space Science, 2021, 24(3): 453-461.
|
[8] |
Sun L, Jiang Y, Guo Q, et al. A GIS-based multi-criteria decision making method for the potential assessment and suitable sites selection of PV and CSP plants[J]. Resources, Conservation and Recycling, 2021, 168: 105306, doi: 10.1016/j.resconrec.2020.105306.
|
[9] |
刘立程, 孙中孝, 吴锋, 等. 京津冀地区光伏开发空间适宜性及减排效益评估[J]. 地理学报, 2022, 77(3): 665-678.
doi: 10.11821/dlxb202203012
|
|
[Liu Licheng, Sun Zhongxiao, Wu Feng, et al. Evaluation of suitability and emission reduction benefits of photovoltaic development in Beijing-Tianjin-Hebei region[J]. Journal of Geography, 2022, 77(3): 665-678. ]
|
[10] |
Yushchenko A, De Bono A, Chatenoux B, et al. GIS-based assessment of photovoltaic (PV) and concentrated solar power (CSP) generation potential in West Africa[J]. Renewale & Sustainable Energy Reviews, 2018, 81: 2088-2103.
|
[11] |
江东, 王娣, 付晶莹, 等. 内蒙古自治区未利用土地可再生能源潜力评估[J]. 科技导报, 2020, 38(11): 60-69.
doi: 10.3981/j.issn.1000-7857.2020.11.007
|
|
[Jiang Dong, Wang Di, Fu Jingying, et al. Assessment of potential of renewable energy to be proclaced on unused land in Inner Mongolia Autonomous Region[J]. Science and Technology Herald, 2020, 38(11): 60-69. ]
|
[12] |
Charabi Y, Gastli A. PV site suitability analysis using GIS-based spatial fuzzy multi-criteria evaluation[J]. Renewable Energy, 2011, 36(9): 2554-2561.
|
[13] |
Villacreses G, Martínez-Gómez J, Jijón D, et al. Geolocation of photovoltaic farms using geographic information systems (GIS) with multiple-criteria decision-making (MCDM) methods: Case of the Ecuadorian energy regulation[J]. Energy Reports, 2022, 8: 3526-3548.
|
[14] |
董秋霞, 董樊丽, 耿涌, 等. 碳达峰碳中和背景下内蒙古绿色低碳发展的路径和对策建议[J]. 科学管理研究, 2022, 40(6): 77-83.
|
|
[Dong Qiuxia, Dong Fanli, Geng Yong, et al. The path and countermeasures of green and low-carbon development in Inner Mongolia under the background of carbon peak and neutrality[J]. Science Management Research, 2022, 40(6): 77-83. ]
|
[15] |
Giamalaki M, Tsoutsos T. Sustainable siting of solar power installations in Mediterranean using a GIS/AHP approach[J]. Renewable Energy, 2019, 141: 64-75.
doi: 10.1016/j.renene.2019.03.100
|
[16] |
吕玉坤, 杨宇星, 赵伟萍. 低风速环境下光伏组件积灰特性模拟研究[J]. 电源技术, 2021, 45(6): 801-804, 827.
|
|
[Lü Yukun, Yang Yuxing, Zhao Weiping. Ash deposition characteristics of photovoltaic modules under low wind speed numerical simulation[J]. Power Technology, 2021, 45(6): 801-804, 827. ]
|
[17] |
Raza M A, Yousif M, Hassan M, et al. Site suitability for solar and wind energy in developing countries using combination of GIS-AHP: A case study of Pakistan[J]. Renewable Energy, 2023, 206: 180-191.
|
[18] |
Huang T, Wang S, Yang Q, et al. A GIS-based assessment of large-scale PV potential in China[J]. Cleaner Energy for Cleaner Cities, 2018, 152: 1079-1084.
|
[19] |
叶小伟, 乔建芳. 乌兹别克斯坦可再生能源现状及中乌合作建议[J]. 干旱区地理, 2022, 45(4): 1313-1319.
|
|
[Ye Xiaowei, Qiao Jianfang. Current situation of renewable energy in Uzbekistan and suggestions on China-Uzbekistan cooperation[J]. Arid Land Geography, 2022, 45(4): 1313-1319. ]
|
[20] |
Zhao L, Jia K, Liu X, et al. Assessment of land degradation in Inner Mongolia between 2000 and 2020 based on remote sensing data[J]. Geography and Sustainability, 2023, 4(2): 100-111.
|
[21] |
Li X, Mauzerall D L, Bergin M H. Global reduction of solar power generation efficiency due to aerosols and panel soiling[J]. Nature Sustainability, 2020, 3(9): 720-727.
|
[22] |
达成, 张富涛, 钱勇生, 等. 关中平原城市群“交通-产业-环境”耦合协调发展的动态演化特征分析[J]. 干旱区地理, 2022, 45(3): 955-965.
|
|
[Da Cheng, Zhang Futao, Qian Yongsheng, et al. Dynamic evolution characteristics of coordinated development of transportation-industry-environment in Guanzhong Plain urban agglomeration[J]. Arid Land Geography, 2022, 45(3): 955-965. ]
|