To improve the training speed of support vector machine (SVM), a method called improved center distance ratio method (ICDRM) with determining thresholds automatically is presented here without reduce the identific...To improve the training speed of support vector machine (SVM), a method called improved center distance ratio method (ICDRM) with determining thresholds automatically is presented here without reduce the identification rate. In this method border vectors are chosen from the given samples by comparing sample vectors with center distance ratio in advance. The number of training samples is reduced greatly and the training speed is improved. This method is used to the identification for license plate characters. Experimental resuhs show that the improved SVM method-ICDRM does well at identification rate and training speed.展开更多
裂纹扩展抗力是材料的内在属性,Paris的重要贡献是将ΔK引入疲劳裂纹扩展的研究,表明疲劳裂纹扩散的控制参数是应力强度因子ΔK。本试验异种焊接接头采用钨极氩弧焊(TIG)进行打底焊接,而后采用埋弧自动焊进行多层多道焊接,焊后进行相应...裂纹扩展抗力是材料的内在属性,Paris的重要贡献是将ΔK引入疲劳裂纹扩展的研究,表明疲劳裂纹扩散的控制参数是应力强度因子ΔK。本试验异种焊接接头采用钨极氩弧焊(TIG)进行打底焊接,而后采用埋弧自动焊进行多层多道焊接,焊后进行相应的回火处理,之后随炉自然冷却。实验材料为9Cr钢母材、Cr Mo V母材和两侧的热影响区及焊缝区。按照降K法进行测试,应力比分别设定为0.5、0.7、0.9,在近门槛值区域进行多次测量,通过线性回归法拟合出直线方程,由此计算出疲劳扩展门槛值,可反映该焊接条件下9Cr与Cr Mo V异种材料接头的疲劳裂纹扩展行为。展开更多
基金Sponsored by the National Natural Science Foundation of China(60472110)
文摘To improve the training speed of support vector machine (SVM), a method called improved center distance ratio method (ICDRM) with determining thresholds automatically is presented here without reduce the identification rate. In this method border vectors are chosen from the given samples by comparing sample vectors with center distance ratio in advance. The number of training samples is reduced greatly and the training speed is improved. This method is used to the identification for license plate characters. Experimental resuhs show that the improved SVM method-ICDRM does well at identification rate and training speed.
文摘裂纹扩展抗力是材料的内在属性,Paris的重要贡献是将ΔK引入疲劳裂纹扩展的研究,表明疲劳裂纹扩散的控制参数是应力强度因子ΔK。本试验异种焊接接头采用钨极氩弧焊(TIG)进行打底焊接,而后采用埋弧自动焊进行多层多道焊接,焊后进行相应的回火处理,之后随炉自然冷却。实验材料为9Cr钢母材、Cr Mo V母材和两侧的热影响区及焊缝区。按照降K法进行测试,应力比分别设定为0.5、0.7、0.9,在近门槛值区域进行多次测量,通过线性回归法拟合出直线方程,由此计算出疲劳扩展门槛值,可反映该焊接条件下9Cr与Cr Mo V异种材料接头的疲劳裂纹扩展行为。