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High Precision Test Method for Dynamic Imaging of Space Camera

机译:空间相机动态成像的高精度测试方法

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A test method for dynamic imaging of space TDICCD (Time Delay and Integration Charge Coupled Devices) camera was presented in this paper.The test method adopted the PLL (Phase Locked Loop) technology and CMAC (Cerebella Model Articulation Controller) friction compensation as control strategy.Furthermore,According to this method,a test system for dynamic imaging of space TDICCD camera was designed and implemented.The system simulated the movement of the ground objects relative to the space aerocraft,to validate the capability of image speed match and the dynamic imaging quality of TDICCD camera.The design adopted a precision turntable and a drift turntable to simulate the movement around the earth and the drift motion in different latitude due to the rotation of earth,of the aerocraft The turntables were drived by permanent magnet torque motor which was powered by PWM (Pulse Width Modulation).The system adopted DSP (Digital Signal Processor) as the control core and reached a very high performance.The experimental results showed that the steady speed error was better than 0.01% and the instantaneous speed error reached 0.0267%.The precision of the test system designed met the requirement for dynamic imaging of TDICCD camera.
机译:提出了一种时空积分电荷耦合器件(TDICCD)相机动态成像的测试方法,该测试方法采用锁相环(PLL)技术和小脑模型关节控制器CMAC(Cerebella Model Articulation Controller)摩擦补偿作为控制策略。此外,根据该方法,设计并实现了空间TDICCD相机动态成像测试系统。该系统模拟了地面物体相对于航天飞机的运动,以验证图像速度匹配和动态成像的能力。该设计采用了精密转盘和漂移转盘来模拟飞机的绕地球运动和由于地球旋转而在不同纬度下的漂移运动。该系统采用DSP(数字信号处理器)作为控制核心,并达到了很高的p实验结果表明,稳态速度误差优于0.01%,瞬时速度误差达到0.0267%。设计的测试系统的精度满足了TDICCD相机动态成像的要求。

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