The Staring Area Imaging Technology(SAIT) satellite continuously "images" the target over a certain time range, and can realize continuous imaging and multi-angle imaging of the area of interest. It has the ...The Staring Area Imaging Technology(SAIT) satellite continuously "images" the target over a certain time range, and can realize continuous imaging and multi-angle imaging of the area of interest. It has the characteristics of flexible imaging parameter setting and fast image preprocessing speed, enabling dynamic target detection and tracking, super-resolution, surface 3 D model construction, night-time imaging and many other application tasks. Based on the technical characteristics of the SAIT satellite, this paper analyzes the challenges in satellite development and data processing, focuses on the quasi-realtime application of SAIT satellite data, and looks at the development trend of the SAIT satellite.展开更多
Objective:Explore the feasibility of the high precision accelerometer for measuring the human respiratory displacement.Methods:A wireless acceleration acquisition system with the low power consumption and the high pre...Objective:Explore the feasibility of the high precision accelerometer for measuring the human respiratory displacement.Methods:A wireless acceleration acquisition system with the low power consumption and the high precision was designed with the high precision acceleration sensor ADXL355 as the core device.Based on the frequency characteristics of the breathing motion and the principle that the displacement can be calculated by the acceleration quadratic integration,two displacement measurement algorithms for the quasi-periodic weak motion are designed.Results:The simulation results show that the proposed algorithm is effective.The experimental results show that the designed acquisition system and algorithm can calculate the human respiratory displacement.Conclusion:The high precision accelerometer can be used to measure the human respiratory displacement,which provides a new method for the measurement of the human respiratory displacement.展开更多
基于电流镜积分读出电路的X射线CMOS图像传感器 (CMI X IS)的原理 ,并对电流镜积分读出电路进行了计算机模拟。对CMI X IS的性能参数进行了测试 ,并对光电转换特性曲线进行了分析。设计了CMI X IS的应用电路 ,得到了不同密度、不同尺寸...基于电流镜积分读出电路的X射线CMOS图像传感器 (CMI X IS)的原理 ,并对电流镜积分读出电路进行了计算机模拟。对CMI X IS的性能参数进行了测试 ,并对光电转换特性曲线进行了分析。设计了CMI X IS的应用电路 ,得到了不同密度、不同尺寸材料的视频信号波形。测试结果和实验表明 ,CMI X IS具有较低的暗噪声、较大的响应度、较高的输出电压和较宽的动态范围 ,可以应用于X射线实时成像检测领域。展开更多
文摘The Staring Area Imaging Technology(SAIT) satellite continuously "images" the target over a certain time range, and can realize continuous imaging and multi-angle imaging of the area of interest. It has the characteristics of flexible imaging parameter setting and fast image preprocessing speed, enabling dynamic target detection and tracking, super-resolution, surface 3 D model construction, night-time imaging and many other application tasks. Based on the technical characteristics of the SAIT satellite, this paper analyzes the challenges in satellite development and data processing, focuses on the quasi-realtime application of SAIT satellite data, and looks at the development trend of the SAIT satellite.
文摘Objective:Explore the feasibility of the high precision accelerometer for measuring the human respiratory displacement.Methods:A wireless acceleration acquisition system with the low power consumption and the high precision was designed with the high precision acceleration sensor ADXL355 as the core device.Based on the frequency characteristics of the breathing motion and the principle that the displacement can be calculated by the acceleration quadratic integration,two displacement measurement algorithms for the quasi-periodic weak motion are designed.Results:The simulation results show that the proposed algorithm is effective.The experimental results show that the designed acquisition system and algorithm can calculate the human respiratory displacement.Conclusion:The high precision accelerometer can be used to measure the human respiratory displacement,which provides a new method for the measurement of the human respiratory displacement.
文摘基于电流镜积分读出电路的X射线CMOS图像传感器 (CMI X IS)的原理 ,并对电流镜积分读出电路进行了计算机模拟。对CMI X IS的性能参数进行了测试 ,并对光电转换特性曲线进行了分析。设计了CMI X IS的应用电路 ,得到了不同密度、不同尺寸材料的视频信号波形。测试结果和实验表明 ,CMI X IS具有较低的暗噪声、较大的响应度、较高的输出电压和较宽的动态范围 ,可以应用于X射线实时成像检测领域。