Abstract
Response variables and their driving factors often vary with time in the process of land use dynamic simulation; however, there are few existing literatures mentioned it.In order to evaluate the impact of time factor on urban land use simulation and to improve simulation accuracy, exponential smoothing method was adopted to improve Dyna-CLUE model, as an example of Chongqing Metropolitan Area. Results showed that accuracies of simulation results vary from smoothing coefficients. When the smoothing coefficient was 0.4, the accuracy of the simulation was highest, and the accuracy of simulation results has improved 3.51%, compared to the simulation results without smoothing. Results indicated that time factor has impact on simulation accuracies of urban land use dynamic changes to a certain extent. The possible reason may be that the exponential smoothing method updates the regression parameters dynamically. Exponential smoothing method was introduced into Dyna-CLUE model in this study and results show that simulation accuracy can be improved which reflects that time series plays an important role in the simulation of land use dynamic.
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References
Tobler, W.R.: A computer movie simulating urban growth in the Detroit region. Economic Geography 46, 234–240 (1970)
Wu, G.-P., Zeng, Y.-N., Feng, X.-Z., et al.: Dynamic simulation of land use change based on the improved CLUE-S model: A case study of Yongding County, Zhangjiajie. Geographical Research 39, 460–470 (2010)
Liao, Q., Li, M., Shi, Y.-Q.: The Research on Land Use Pattern Simulation Using Geographically Weighted Regression and Improved CLUE-S. Shanghai Land & Resource 32(4), 31–37 (2011)
Zhang, J.: Research on the Spatial Variation of the Urban Housing Land Prices Based on Geographically Weighted. Zhejiang University (2012)
Yang, Y.-L., Zhou, X.-C., Wu, B.: Spatial distribution simulation of urban construction land expansion in Zhangzhou city. Journal of Fuzhou University(Natural Science Edition) 40(1), 63–69 (2012)
Wu, K.-Z., Wu, B.: Simulation of Urban Expansion Based on Logistic Regression with the Consideration of Spatial Correlation. Journal of Henan University(Natural Science) 40(3), 267–273 (2010)
Huang, M., Ru, H., Zhang, J., et al.: A Multi-Scale Simulation of Land Use Change in Luoyugou Watershed Based on CLUE-S Mode. Resources Science 34(4), 769–776 (2012)
Liu, M., Hu, Y.-M., Chang, Y., et al.: Analysis of temporal predicting abilities for the CLUE-S land use model. Acta Ecological Sinica 29(11), 6111–6119 (2009)
Feng, S., Gao, X., Gu, J., et al.: Land use spatial distribution modeling based on CLUE-S model in the Huangshui River Basin. Acta Ecological Sinica 33(3), 985–997 (2013)
Brown, R.G.: Exponential Smoothing for Predicting Demand, p. 15. Arthur D. Little Inc., Cambridge (1956)
Shang, X.-S., Lin, W.-D., Tang, Y.-K.: Development and Application of a Combined Water Quality Prediction Model Based on Exponential Smoothing and GM(1,1)—A Case Study of Iron and Manganese Levels in Yongjiang River. Environmental Science & Technonogy 34(1), 191–195 (2011)
Wang, F.-X., Zhou, W.-P.: Statistical Combination Forecast Method Based on Exponential Smoothing and Grey Mode. Journal of Kashgar Teachers College l33(3), 1–3 (2012)
Tong, Q., Zhang, K.-G., Du, J.-L.: Exponential Smoothing Forecasting Method and Its Application in Economic Forecast. Economic Research Guide 4, 11–13 (2013)
Wang, M., Zuo, X., Zuo, W., et al.: A Novel Combine Forecasting Method for Predicting News Update Time. Journal of Software 7(12), 2787–2793 (2012)
Koehler, A.B., Snyder, R.D., Ord, J.K., et al.: A study of outliers in the exponential smoothing approach to forecasting. International Journal of Forecasting 28(2), 477–484 (2012)
Yang, Y.-L., Zhou, X., Wu, B.: Urban expansion prediction for zhangzhou city based on GIS and spatiotemporal logistic regression model. Journal of Geo-Information Science 13(3), 374–382 (2011)
Yu, T., Ke, C.-Q.: The simulation of the land use change of Nanjing based on CLUE-S model. Science of Surverying and Mapping 35(1), 186–188 (2010)
Verburg, P.H., Overmars, K.P.: Combining top-down and bottom-up dynamics in land use modeling: exploring the future of abandoned farmlands in Europe with the Dyna-CLUE model. Landscape Ecology 24(9), 1167–1181 (2009)
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Liu, M., Wang, Y., Li, D., Xia, B. (2013). Dyna-CLUE Model Improvement Based on Exponential Smoothing Method and Land Use Dynamic Simulation. In: Bian, F., Xie, Y., Cui, X., Zeng, Y. (eds) Geo-Informatics in Resource Management and Sustainable Ecosystem. GRMSE 2013. Communications in Computer and Information Science, vol 399. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-41908-9_27
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DOI: https://doi.org/10.1007/978-3-642-41908-9_27
Publisher Name: Springer, Berlin, Heidelberg
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