首页> 外文会议>Sensors, Systems, and Next-Generation Satellites XI; Proceedings of SPIE-The International Society for Optical Engineering; vol.6744 >New optical sensor systems for high resolution satellite, airborne and terrestrial imaging systems
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New optical sensor systems for high resolution satellite, airborne and terrestrial imaging systems

机译:用于高分辨率卫星,机载和地面成像系统的新型光学传感器系统

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The department of Optical Information Systems (OS) at the Institute of Robotics and Mechatronics of the German Aerospace Center (DLR) has more than 25 years experience with high-resolution imaging technology. The technology changes in the development of detectors, as well as the significant change of the manufacturing accuracy in combination with the engineering research define the next generation of spaceborne sensor systems focusing on Earth observation and remote sensing. The combination of large TDI lines, intelligent synchronization control, fast-readable sensors and new focal-plane concepts open the door to new remote-sensing instruments. This class of instruments is feasible for high-resolution sensor systems regarding geometry and radiometry and their data products like 3D virtual reality. Systemic approaches are essential for such designs of complex sensor systems for dedicated tasks. The system theory of the instrument inside a simulated environment is the beginning of the optimization process for the optical, mechanical and electrical designs. Single modules and the entire system have to be calibrated and verified. Suitable procedures must be defined on component, module and system level for the assembly test and verification process. This kind of development strategy allows the hardware-in-the-loop design. The paper gives an overview about the current activities at DLR in the field of innovative sensor systems for photogrammetric and remote sensing purposes.
机译:德国航空航天中心(DLR)的机器人和机电一体化研究所的光学信息系统(OS)部门在高分辨率成像技术方面拥有超过25年的经验。探测器发展中的技术变化以及制造精度的重大变化与工程研究相结合,定义了专注于地球观测和遥感的下一代星载传感器系统。大型TDI线路,智能同步控制,快​​速可读的传感器和新的焦平面概念的结合为新的遥感仪器打开了大门。此类仪器对于涉及几何和辐射测量的高分辨率传感器系统及其数据产品(如3D虚拟现实)是可行的。对于专用任务的复杂传感器系统的这种设计,系统方法至关重要。仪器在模拟环境中的系统理论是光学,机械和电气设计优化过程的开始。单个模块和整个系统必须进行校准和验证。必须在组件,模块和系统级别上定义适当的过程,以进行组装测试和验证过程。这种开发策略允许硬件在环设计。本文概述了DLR在用于摄影测量和遥感目的的创新传感器系统领域中的当前活动。

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