目的:寻找不同场地的制胜技术策略与场地转换过程中的技术策略变化特点。方法:运用较小时间单元的技术指标(盘数据),对2018年男子单打四大满贯公开赛,共计73场比赛的单盘数据,进行不同场地胜负者Wilcoxon Signed Ranks Test检验分析,并...目的:寻找不同场地的制胜技术策略与场地转换过程中的技术策略变化特点。方法:运用较小时间单元的技术指标(盘数据),对2018年男子单打四大满贯公开赛,共计73场比赛的单盘数据,进行不同场地胜负者Wilcoxon Signed Ranks Test检验分析,并用Kruskal Wallis Test检验(通过Bonferroni校正)对场地之间技术指标进行差异性检验及多重事后比较分析。结果:1)2018年四大满贯男子比赛,不同场地平均每场盘数:草场>红土>硬地;2)硬地与红土,ACE/%指标具有显著差异,2种场地的各项指标数据均值相差较小。红土与草地,6项技术指标具有显著差异,双误、一发进区率未见显著差异,2种场地的各项指标数据均值相差最大。草地与硬地,7项技术指标具有显著差异,制胜球未见显著差异,数据均值差异小于草地与红土的差异;3)不同场地之间显著差异指标的个数:硬地与红土1个,红土与草地6个,硬地与草地7个。结论:场地不同需要运动员采用不同的技战术策略,注重场地转换过渡期中技术策略思想转变。硬地转红土,注重战术策略趋同性特点变化,发球以限制接得分为主,控制非受迫性失误,整体技战术策略守大于攻。红土转草地,技术指标差异最大,技术策略调整最大,转变防守反击思想,草地发球相关技术更为重要,草地盘数多于红土,整体技战术策略攻大于守。草地转硬地,技术策略接近,硬地需要减少双误,提高一发进区率、二发得分率,注重技术的全面性,整体技战术策略攻守平衡。展开更多
The transformation of the magnetization direction and the magnetic fi eld component is one of the important methods in magnetic data processing and transformation,which can be conducted in both wavenumber and spatial ...The transformation of the magnetization direction and the magnetic fi eld component is one of the important methods in magnetic data processing and transformation,which can be conducted in both wavenumber and spatial domains.The transformation method in the wavenumber domain has simpler processing expression and higher processing effi ciency than in the spatial domain;however,they are unstable at low latitude.In this paper,the conclusion that the sum is 0 of two vertical magnetic fi eld components(magnetization inclinations are also perpendicular)in 2D is used for the 3D transformation of the magnetization direction and the magnetic field component.In addition,the transformation method at low latitudes based on vertical relationship(VMT)is proposed,which is an iterative algorithm that converts the transformation of the magnetization direction and the magnetic field component at the low latitude into the high latitude.This method restrains the instability of transformation of constant and variable magnetization direction and magnetic fi eld components in low latitudes.The accuracy,stability,and practicality are verifi ed from synthetic models and real data.展开更多
基金supported by the subject “Study on the Comprehensive Processing and Interpretation Method and Software Development for Aerial Geophysics (No. 2017YFC0602202)” from National major Research and Development Project of China (No. 2017YFC0602200)。
文摘The transformation of the magnetization direction and the magnetic fi eld component is one of the important methods in magnetic data processing and transformation,which can be conducted in both wavenumber and spatial domains.The transformation method in the wavenumber domain has simpler processing expression and higher processing effi ciency than in the spatial domain;however,they are unstable at low latitude.In this paper,the conclusion that the sum is 0 of two vertical magnetic fi eld components(magnetization inclinations are also perpendicular)in 2D is used for the 3D transformation of the magnetization direction and the magnetic field component.In addition,the transformation method at low latitudes based on vertical relationship(VMT)is proposed,which is an iterative algorithm that converts the transformation of the magnetization direction and the magnetic field component at the low latitude into the high latitude.This method restrains the instability of transformation of constant and variable magnetization direction and magnetic fi eld components in low latitudes.The accuracy,stability,and practicality are verifi ed from synthetic models and real data.