[1]LIU Yan,NIE Lei,NIE Lei,et al.The EEMD-ARIMA Prediction of Runoff at Mountain Pass of Manas River[J].Research of Soil and Water Conservation,2017,24(06):273-280,285.
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The EEMD-ARIMA Prediction of Runoff at Mountain Pass of Manas River

References:
[1] 南峰,李有利,史兴民.新疆玛纳斯河水量波动与气候变化之间的关系[J].水土保持研究,2003,10(3):59-61.
[2] 徐素宁,杨景春,李有利.近50a来玛纳斯河流量变化及对气候变化的响应[J].地理与地理信息科学,2004,20(6):65-68.
[3] 唐湘玲,龙海丽,邢永建.玛纳斯河流域降水与径流变化及其人类活动的影响[J].新疆师范大学学报:自然科学版,2005,24(3):145-152.
[4] 党新成,李新贤,高建.玛纳斯河流域水文与环境特征分析[J].水文,2006,26(5):89-90.
[5] 凌红波,徐海量,张青青,等.新疆玛纳斯河年径流时序特征分析[J].中国沙漠,2011,31(6):1639-1646.
[6] 沈雪峰,艾成.新疆玛纳斯河径流时间变化特征及其趋势分析[J].干旱区资源与环境,2012,26(7):14-19.
[7] 凌红波,徐海量,张青青,等.新疆玛纳斯河径流过程的非线性特征[J].自然资源学报,2011,26(4):683-693.
[8] 张伟,何新林,刘兵,等.天山北麓玛纳斯河径流规律的分析[J].石河子大学学报:自然科学版,2008,26(1):80-82.
[9] 吉磊,何新林,刘兵,等.近60年玛纳斯河径流变化规律的分析[J].石河子大学学报:自然科学版,2013,31(6):765-769.
[10] 李慧,雷晓云,包安明,等.基于SWAT模型的山区日径流模拟:在玛纳斯河流域的应用[J].干旱区研究,2010,27(5):686-690.
[11] 李文倩,汤骅,薛联青.基于融雪TOPMODEL模型对玛纳斯河流域径流的模拟[J].石河子大学学报:自然科学版,2015,33(6):779-786.
[12] 冯平,丁志宏,韩瑞光.基于EMD的洮河年径流量变化多时间尺度分析[J].干旱区资源与环境,2008,22(12):73-76.
[13] 王兵,李晓东.基于EEMD分解的欧洲温度序列的多尺度分析[J].北京大学学报:自然科学版,2011,47(4):627-634.
[14] Ayenu-Prah A Y, Attoh-Okine N O. Comparative study of Hilbert-Huang transform, Fourier transform and wavelet transform in pavement profile analysis[J]. Vehicle System Dynamics, 2009,47(4):437-456.
[15] Alexandrov T. A method of trend extraction using singular spectrum analysis[J]. Revstat-Statistical Journal, 2009,7(1):1-22.
[16] Flandrin P, Rilling G, Gonçalves P. Empirical mode decomposition as a filter bank[J]. IEEE Signal Proc. Lett.,2004,11(2):112-114.
[17] Wu Z H, Huang N E. Ensemble empirical mode decomposition:a noise-assisted data analysis method[J]. Advances in Adaptive Data Analysis, 2009,1(1):1-41.
[18] Huang N E, Shen Z, Long S R, et al. The empirical mode decomposition and the Hilbert spectrum for nonlinear and nonstationary time series analysis[J]. Proceedings of the Royal of Society A,1998,454:903-995.
[19] Wu Z, Huang N E. Ensemble empirical mode decomposition:A noise-assisted data analysis method[J]. Advances in Adaptive Data Analysis, 2009,1(1):1-41.
[20] 郭小芹,刘明春,钱莉,等.从Mann-Kendall特征看石羊河流域降水量的演变规律[J].干旱区地理,2010,33(4):593-599.
[21] Box G E P, Jenkins G M, Reinsel G C, et al. Time Series Analysis:Forecasting and Control[M]. John Wiley & Sons, 2015.
[22] Xu J Y, Chen L, Bai Y X. A hybrid model to simulate the annual runoff of Kaidu River in northwest China[J]. Hydrology & Earth System Sciences Discussions, 2016,20(4):1-33.
[23] Zhang G P. Time series forecasting using a hybrid ARIMA and neural network model[J]. Neurocomputing, 2003,50(1):159-175.
[24] Duan W Y, Huang L M, Han Y, et al. A hybrid EMD-AR model for nonlinear and non-stationary wave forecasting[J]. Journal of Zhejiang Universityence A,2016,17(2):115-129.
[25] Wang W C, Chau K W, Xu D W, et al. Improving Forecasting Accuracy of Annual Runoff Time Series Using ARIMA Based on EEMD Decomposition[J]. Water Resources Management, 2015,29(8):2655-2675.
[26] Dawson C W, Abrahart R J, See L M. HydroTest:A web-based toolbox of evaluation metrics for the standardised assessment of hydrological forecasts[J]. Environmental Modelling & Software, 1995,22(7):1034-1052.
[27] Karunanithi N, Grenney W J, Whitley D, et al. Neural networks for river flow prediction[J]. Journal of computing in Civil Engineering, 1994,8(2):201-220.
[28] Nash J E, Sutcliffe J V. River flow forecasting through conceptual models. part I:A discussion of principles[J]. Journal of Hydrology, 1970,10(3):282-290.
[29] Legates D R, McCabe G J. Evaluating the use of ‘goodness-of-fit’ measures in hydrologic and hydroclimatic model validation[J]. Water Resources Research, 1999,35(1):233-241.
[30] Wang W C, Chau K W, Cheng C T, et al. A comparison of performance of several artificial intelligence methods for forecasting monthly discharge time series[J]. Journal of Hydrology, 2009,374(3):294-306.
[31] Wu Z, Huang N E. A study of the characteristics of white noise using the empirical mode decomposition method[C]//Proceedings of the Royal Society of London A:Mathematical, Physical and Engineering Sciences. The Royal Society, 2004,460(2046):1597-1611.
[32] Adak S. Time-dependent spectral analysis of nonstationary time series[J]. Journal of the American Statistical Association, 1998,93(444):1488-1501.
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