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变系数部分线性模型的估计有效性研究 被引量:1
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作者 赵文星 程国胜 来鹏 《统计与决策》 CSSCI 北大核心 2015年第13期12-14,共3页
文章研究了含有异方差的变系数部分线性模型估计的有效性问题,提出一种构造加权有效估计方程来求解感兴趣参数的有效估计的方法。通过计算感兴趣参数的得分函数在冗余参数切空间的正交补空间上的投影,得出含有异方差的变系数部分线性模... 文章研究了含有异方差的变系数部分线性模型估计的有效性问题,提出一种构造加权有效估计方程来求解感兴趣参数的有效估计的方法。通过计算感兴趣参数的得分函数在冗余参数切空间的正交补空间上的投影,得出含有异方差的变系数部分线性模型的有效得分函数,从而利用其构造加权有效估计方程;证明了有效估计方程的解为感兴趣参数的有效估计,其渐近方差可以达到最小方差下界,同时给出该有效估计的大样本性质,并通过数值模拟验证了其有限样本性质。 展开更多
关键词 变系数部分线性模型 有效估计方程 有效得分函数 有效估计 异方差
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Adaptive Neuro-Fuzzy Inference System for Thermal Field Evaluation of Underground Cable System
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作者 Mamdooh S. AI-Saud 《Journal of Energy and Power Engineering》 2012年第10期1643-1650,共8页
The influence of thermal circuit parameters on a buried underground cable is investigated using an ANFIS (adaptive neuro-fuzzy inference system). Finite element solution of the heat conduction equation is used, comb... The influence of thermal circuit parameters on a buried underground cable is investigated using an ANFIS (adaptive neuro-fuzzy inference system). Finite element solution of the heat conduction equation is used, combined with artificial intelligence methods. The cable temperature depends on several parameters, such as the ambient temperature, the currents flowing through the conductor and the resistivity of the surrounding soil. In this paper, ANFIS is used to simulate the problem of the thermal field of underground cables under various parameters variation and climatic conditions. The developed model was trained using data generated from FEM (finite element method) for different configurations (training set) of the thermal field problem. After training, the system is tested for several scenarios, differing significantly from the training cases. It is shown that the proposed method is very time efficient and accurate in calculating the thermal fields compared to the relatively time consuming finite element method; thus ANFIS provides a potential computationally efficient and inexpensive predictive tool for more effective thermal design of underground cable systems. 展开更多
关键词 Underground cables AMPACITY thermal analysis finite element method adaptive neuro-fuzzy inference system.
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