该文研究了基于Chirp Scaling原理实现双基聚束SAR成像的极坐标格式算法(Polar Format Algorithm,PFA)。PFA通过两个一维插值来实现数据的极坐标格式转换,插值计算量较大。该文基于发射信号的线性调频特性,在距离向对极坐标格式数据进...该文研究了基于Chirp Scaling原理实现双基聚束SAR成像的极坐标格式算法(Polar Format Algorithm,PFA)。PFA通过两个一维插值来实现数据的极坐标格式转换,插值计算量较大。该文基于发射信号的线性调频特性,在距离向对极坐标格式数据进行变标处理,仅包含信号复乘和FFT,从而避免了插值运算。文中对于接收Chirp信号和Dechirp信号分别进行了讨论,依照不同流程实现了极坐标格式算法。同插值方法相比,二者聚焦结果相当,但是CS(Chirp Scaling)的方法速度有显著提高。点目标仿真实验验证了此方法的有效性。展开更多
This paper presents a combination of experimental and numerical investigations on the dynamic response of scaling cabin structures under internal blast loading.The purpose of this study is to modify the similar relati...This paper presents a combination of experimental and numerical investigations on the dynamic response of scaling cabin structures under internal blast loading.The purpose of this study is to modify the similar relationship between the scaled-down model and the prototype of the cabin structures under internal blast loading.According to the Hopkinson’s scaling law,three sets of cabin structure models with different scaling factors combined with different explosive masses were designed for the experimental study.The dynamic deformation process of the models was recorded by a three-dimensional digital imaging correlation(DIC)method and a 3D scanning technology was used to reconstruct the deformation modes of the specimen.In addition,a finite element model was developed for the modification of the scaling law.The experimental results showed that the final deflection-to-thickness ratio was increased with the increase of the model size despite of the similar trend of their deformation processes.The reason for this inconsistency was discussed based on the traditional scaling law and a modified formula considering of the effects of size and strain-rate was provided.展开更多
文摘该文研究了基于Chirp Scaling原理实现双基聚束SAR成像的极坐标格式算法(Polar Format Algorithm,PFA)。PFA通过两个一维插值来实现数据的极坐标格式转换,插值计算量较大。该文基于发射信号的线性调频特性,在距离向对极坐标格式数据进行变标处理,仅包含信号复乘和FFT,从而避免了插值运算。文中对于接收Chirp信号和Dechirp信号分别进行了讨论,依照不同流程实现了极坐标格式算法。同插值方法相比,二者聚焦结果相当,但是CS(Chirp Scaling)的方法速度有显著提高。点目标仿真实验验证了此方法的有效性。
基金the support from the National Natural Science Foundation of China under Grant No. 11902031,No. 11802030 , No. 11802031Beijing Municipal Science and Technology Project Management Approach under No. Z181100004118002
文摘This paper presents a combination of experimental and numerical investigations on the dynamic response of scaling cabin structures under internal blast loading.The purpose of this study is to modify the similar relationship between the scaled-down model and the prototype of the cabin structures under internal blast loading.According to the Hopkinson’s scaling law,three sets of cabin structure models with different scaling factors combined with different explosive masses were designed for the experimental study.The dynamic deformation process of the models was recorded by a three-dimensional digital imaging correlation(DIC)method and a 3D scanning technology was used to reconstruct the deformation modes of the specimen.In addition,a finite element model was developed for the modification of the scaling law.The experimental results showed that the final deflection-to-thickness ratio was increased with the increase of the model size despite of the similar trend of their deformation processes.The reason for this inconsistency was discussed based on the traditional scaling law and a modified formula considering of the effects of size and strain-rate was provided.