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Fast Variable Selection by Block Addition and Block Deletion 被引量:1
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作者 Takashi Nagatani Seiichi Ozawa shigeo abe 《Journal of Intelligent Learning Systems and Applications》 2010年第4期200-211,共12页
We propose the threshold updating method for terminating variable selection and two variable selection methods. In the threshold updating method, we update the threshold value when the approximation error smaller than... We propose the threshold updating method for terminating variable selection and two variable selection methods. In the threshold updating method, we update the threshold value when the approximation error smaller than the current threshold value is obtained. The first variable selection method is the combination of forward selection by block addi-tion and backward selection by block deletion. In this method, starting from the empty set of the input variables, we add several input variables at a time until the approximation error is below the threshold value. Then we search deletable variables by block deletion. The second method is the combination of the first method and variable selection by Linear Programming Support Vector Regressors (LPSVRs). By training an LPSVR with linear kernels, we evaluate the weights of the decision function and delete the input variables whose associated absolute weights are zero. Then we carry out block addition and block deletion. By computer experiments using benchmark data sets, we show that the proposed methods can perform faster variable selection than the method only using block deletion, and that by the threshold updating method, the approximation error is lower than that by the fixed threshold method. We also compare our method with an imbedded method, which determines the optimal variables during training, and show that our method gives comparable or better variable selection performance. 展开更多
关键词 Backward SELECTION Forward SELECTION Least SQUARES SUPPORT VECTOR MACHINES Linear Programming SUPPORT VECTOR MACHINES SUPPORT VECTOR MACHINES Variable SELECTION
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一个热带气旋的非对称性与移动的数值模拟
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作者 shigeo abe 王玉清 《气象科技》 北大核心 1989年第6期51-54,共4页
通过模式气旋的数值模拟研究了风暴的非对称性结构与移动之间的关系。从总流场中减去对称涡旋得到非对称风场,在低层辐合层,非对称风场中存在两个涡旋。气旋性涡旋在平均风下风方向左侧,反气旋性祸旋在右侧。在涡旋发展阶段,低层辐合层... 通过模式气旋的数值模拟研究了风暴的非对称性结构与移动之间的关系。从总流场中减去对称涡旋得到非对称风场,在低层辐合层,非对称风场中存在两个涡旋。气旋性涡旋在平均风下风方向左侧,反气旋性祸旋在右侧。在涡旋发展阶段,低层辐合层中,在半径为1.8个纬距的内区里,平均风指向涡旋移动方向的左侧,而在半径为1.8到9.5个纬距的外区,其平均风指向涡旋移动方向的右侧;在涡旋的衰减阶段,这两个区域内的平均风与涡旋移动方向近于一致。 展开更多
关键词 非对称结构 热带气旋 低层辐合 移动方向 下风方 涡度 基本气流 位势高度 内区 高空辐散
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