[1]冯禹,崔宁博,龚道枝.机器学习算法和Hargreaves模型在四川盆地ET0计算中的比较[J].中国农业气象, 2016, 37(4): 415-421.
Feng Y, Cui N B, Gong D Z.Comparison of machine learning algorithms and Hargreaves model for reference evapotranspiration eestimation in Sichuan basin[J].Chinese Journal of Agrometeorology, 2016, 37(4):415-421.(in Chinese)
[2]Allen R G,Pruitt W O,Wright J L,et al.A recommendation on standardized surface resistance for hourly calculation of reference ET0 by the FAO56 Penman-Monteith method[J]. Agricultural Water Management,2006, 81(1-2): 1-22.
[3]Porter J R.AFRCWHEAT2:a model of the growth and development of wheat incorporating responses to water and nitrogen[J].Europe Journal Agronomy, 1993(2):69-82.
[4]Li H S,Ma W B,Lian Y W,et al.Estimating daily global solar radiation by day of year in China[J]. Applied Energy, 2010, 87(10):3011-3017.
[5]Susan S,James L,Philip A,et al.Solar radiation management could be a game changer[J].Nature Climate Change, 2014, 4(10):842-842.
[6]Hakuba M Z,Folini D,Schaepman-Strub G,et al.Solar absorption over Europe from collocated surface and satellite observations[J].Journal of Geophysical Research Atmospheres, 2014,119(119):3420-3437.
[7]?ahin M,Kaya Y,Uyar M.Comparison of ANN and MLR models for estimating solar radiation in Turkey using NOAA/AVHRR data[J].Advances in Space Research, 2013, 51(5):891-904.
[8]Liu X,Mei X,Li Y,et al.Evaluation of temperature- based global solar radiation models in China[J]. Agricultural & Forest Meteorology, 2009, 149(9): 1433-1446.
[9]Liu X,Mei X,Li Y,et al.Calibration of the ?ngstr?m–Prescott coefficients (a, b) under different time scales and their impacts in estimating global solar radiation in the Yellow River basin[J]. Agricultural & Forest Meteorology, 2009,149(3-4): 697-710.
[10]Yao W,Li Z,Wang Y,et al.Evaluation of global solar radiation models for Shanghai, China[J].Energy Conversion & Management,2014,84:597-612.
[11]Liu X,Mei X,Li Y,et al.Choice of the ?ngstr?m– Prescott coefficients:are time-dependent ones better than fixed ones in modeling global solar irradiance [J].Energy Conversion & Management, 2010,51(12): 2565-2574.
[12]Liu X,Li Y,Zhong X,et al.Towards increasing availability of the Angstrom-Prescott radiation parameters across China:spatial trend and modeling[J].Energy Conversion & Management,2014,87:975-989.
[13]李曼曼,梅旭荣,钟秀丽,等.云南省?ngstr?m- prescott 辐射模型的参数化研究[J].农业工程学报, 2012,28(6):1100-105.
Li M M,Mei X R,Zhong X L,et al.Parameterization of ?ngstr?m-prescott radiation model in Yunnan province[J]. Transactions of the CSAE,2012, 28(6): 100- 105.(in Chinese)
[14]毛洋洋,赵艳霞,张祎,等.五个常见日太阳总辐射模型在华北地区的有效性验证及分析[J].中国农业气象,2016,37(5):520-530.
Mao Y Y,Zhao Y X,Zhang W,et al.Validation and analysis of five general daily solar radiation estimation models used in northern China[J].Chinese Journal of Agrometeor- ology,2016,37(5):520-530.(in Chinese)
[15]Bristow K L,Campbell G S.On the relationship between incoming solar radiation and daily maximum and minimum temperature [J]. Agricultural & Forest Meteorology, 1984, 31(2): 159-166.
[16]Hargreaves G H.The 1980-1981 food and climate review[M].The Food and Climate Forum,Aspen Institute for Humanistic Studies,Boulder,Colo,1981:29-32.
[17]Chen R S,Yang J P,Zhao W Z.Validation of five global radiation models with measured daily data in China[J]. Energy Conversion and Management, 2004, 45: 1759-1769.
[18]刘可群, 陈正洪,梁益同,等.日太阳总辐射推算模型[J].中国农业气象, 2008,29(1):16-19.
Liu K Q,Chen Z H,Liang Y T,et al.Calculation model for daily global solar radiation[J].Chinese Journal of Agrome- teorology,2008,29(1):16-19.(in Chinese)
[19]Ball R A,Purcell L C,Carey S K.Evaluation of solar radiation prediction models in North America [J]. Agronomy Journal,2004,96:391-397.
[20]Chen J L,Li G S.Estimation of monthly average daily solar radiation from measured meteorological data in Yangtze River Basin in China[J]. International Journal of Climatology, 2013,33(2): 487-498.
[21]Wu G,Liu Y,Wang T.Methods and strategy for modeling daily global solar radiation with measured meteorological data :a case study in Nanchang station,China[J].Energy Conversion & Management,2007,48(9):2447-2452.
[22]Olatomiwa L,Mekhilef S,Shamshirband S,et al.Adaptive neuro-fuzzy approach for solar radiation prediction in Nigeria[J].Renewable & Sustainable Energy Reviews,2015,51:1784-1791.
[23]Cao S,Cao J.Forecast of solar irradiance using recurrent neural networks combined with wavelet analysis[J]. Applied Thermal Engineering, 2005,25(2-3): 161-172.
[24]Rehman S.Solar radiation over Saudi Arabia and comparisons with empirical models[J]. Energy, 1998, 23 (12):1077-1082.
[25]López G,Batlles F J,Tovar-Pescador J.Selection of input parameters to model direct solar irradiance by using artificial neural networks[J]. Energy,2005, 30(9):1675-1684.
[26]Celik A N,Muneer T.Neural network based method for conversion of solar radiation data[J].Energy Conversion & Management,2013,67(1):117-124.
[27]Wang L,Kisi O,Zounematkermani M,et al.Solar radiation prediction using different techniques: model evaluation and comparison[J].Renewable & Sustainable Energy Reviews, 2016,61:384-397.
[28]Specht D F.The general regression neural network:rediscovered[J]. Neural Networks,1993,6(7): 1033-1034.
[29]杨彬,贺正洪.一种GRNN神经网络的高超声速飞行器轨迹预测方法[J].计算机应用与软件, 2015, 32(7): 239-243.
Yang B, He Z H.Hypersonic vehicle track prediction based on GRNN[J].Computer Applications and Software,2015, 32(7): 239-243.(in Chinese)
[30]Helton J C,Davis F J.Latin hypercube sampling and the propagation of uncertainty in analyses of complex systems
[J] Reliability Engineering System Safety, 2002,81 (1): 23-69.
[31]Core Team R.R:a language and environment for statistical computing[Z].R Foundation for Statistical Computing, Vienna, Austria, URL. https://www.R-project.org/,2015.
[32]Allan R G,Pereira L S,Raes D,et al.Crop evapotranspiration: guidelines for computing crop water requirements [J].Rome: FAO,1998:56. |