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Development cost prediction of general aviation aircraft using combined estimation technique 被引量:5

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摘要 Obtaining accurate development cost estimation results of general aviation aircraft is crucial for companies to adopt the best strategy in the development process.To address this problem,this paper proposes a combination of three commonly used single prediction methods.The optimal weight values of the three single prediction methods are determined by utilizing the shortest ideal point method.Ten cost datasets collected from literature are utilized for fitting and testing the combined prediction method,and the weight coefficients of the three individual prediction methods are calculated as 0.6859,0.0035 and 0.3106,respectively.The results of this study indicate that the developed method has better fitting and estimation accuracy than that of the three individual methods,with average fitting and predicting error values of 2.60%and 6.43%,respectively.Additionally,the cost data of military and civil aircraft development from literature are collected for verification.The results further confirm that the proposed method is not only superior to the single prediction methods in terms of high precision but has wider applications.More importantly,this research can provide important reference for general aviation aircraft companies in term of product cost planning and corporate sales strategies.
出处 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2021年第4期32-41,共10页 中国航空学报(英文版)
基金 the National Postdoctoral Program for Innovative Talents,Postdoctoral Science Foundation of China(No.2017M610740) the supports from Hefei General Aviation Research Institute,Beihang University。
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  • 1李登科,张恒喜,李寿安.BP神经网络的飞机机体研制费用估算[J].火力与指挥控制,2006,31(9):27-29. 被引量:9
  • 2周辉仁,郑丕谔.基于递阶遗传算法和BP网络的时间序列预测[J].系统仿真学报,2007,19(21):5055-5058. 被引量:28
  • 3Thokala P. Life cycle cost modelling as an aircraft design deci sion support tool[D]. Southampton: University of Southam- pton, 2009.
  • 4Thokala P, Scanlan J, Chipperfield A. Life cycle cost modelling as an aircraft design support tool[J]. Aerospace Engineering, 2009, 224(4): 477-487.
  • 5Curran R, Castagne S, Early J, et al. Aircraft cost modelling using the genetic causal technique within a systems engineering approach[J]. The Aeronautical Journal, 2007, 111(1121) : 409 - 420.
  • 6Fiores B E, White E M. Subjective versus objective combining offorecasts: an experiment[J]. Journal of Forecasting, 1989, 8(3) : 331 - 341.
  • 7Bates J M, Granger C W J. The combination of forecasts[J]. Operational Research Quarterly, 1969, 20(4) : 451 - 468.
  • 8Lam K F, Mui H W, Yuan H K. A note on minimizing absolute percentage error in combined forecasts[J]. Computers & Operations Research, 2001, 28(11) : 1141 - 1147.
  • 9Chakraborty K, Mehrotra K, Mohan C K, et al. Forecasting the behavior of multivariate time series using neural networks[J].Neu- ral Networks, 1992, 5(6) :961 - 970.
  • 10Ilea D E, Whelan P F. Image segmentation based on the inte- gration of colour-texture deseriptors--a review[J].Pattern Recognition, 2011, 44(10/11) :2479- 2501.

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