光电采集应用验证平台设计与实现

Design and implementation of photoelectric acquisition application verification platform

  • 摘要: 为了提高当前应用于航空遥感试验场景的半实物仿真能力,解决现阶段逼真度不足、精度低的问题,设计并实现了一个微缩实物模型上光电仿真探测识别技术平台,通过构建微缩沙盘模型实现应用场景再现,基于桁架机器人搭载飞行仿真转台实现遥感数据采集与处理。试验结果表明:设计的半实物仿真平台可通过获取多种光电传感器数据模拟遥感测试数据,激光雷达获取目标方位与距离信息进行三维重建,可见光相机与红外相机获取目标二维图像信息进行探测与识别。通过演示验证,半实物仿真平台可为航空遥感试验提供有效支撑。

     

    Abstract: In order to improve the capability of semi-physical simulation applied to the aerial remote sensing test scenes, the problems of insufficient fidelity and low precision were solved. An optoelectronic simulation detection and recognition technology platform based on miniature physical model was designed and implemented. Application scenarios were reproduced by constructing a miniature sand table model, and the remote sensing data acquisition and processing were realized based on the flight simulation turntable equipped with a truss robot. The experimental results show that the designed semi-physical simulation platform can simulate remote sensing test data by acquiring various photoelectric sensor data, laser radar can obtain the target orientation and distance information for three-dimensional reconstruction, and visible light camera and infrared camera can obtain the target two-dimensional image information for detection and recognition. Through demonstration and verification, the semi-physical simulation platform can provide effective support for aerial remote sensing test.

     

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