首页> 外文会议>ESA Symposium on European Rocket and Balloon Programmes and Related Research >FLYING BORESIGHT FOR ADVANCED TESTING AND CALIBRATION OF TRACKING ANTENNAS AND FLIGHT PATH SIMULATIONS
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FLYING BORESIGHT FOR ADVANCED TESTING AND CALIBRATION OF TRACKING ANTENNAS AND FLIGHT PATH SIMULATIONS

机译:用于高级测试和跟踪天线和飞行路径模拟的先进测试和校准飞行

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The application of ground-based boresight sources for calibration and testing of tracking antennas usually entails various difficulties, mostly due to unwanted ground effects. To avoid this problem, DLR MORABA developed a small, lightweight, frequency-adjustable S-band boresight source, mounted on a small remote-controlled multirotor aircraft. Highly accurate GPS-supported, position and altitude control functions allow both, very steady positioning of the aircraft in mid-air, and precise waypoint-based, semi-autonomous flights. In contrast to fixed near-ground boresight sources this flying setup enables to avoid obstructions in the Fresnel zone between source and antenna. Further, it minimizes ground reflections and other multipath effects which can affect antenna calibration. In addition, the large operating range of a flying boresight simplifies measurements in the far field of the antenna and permits undisturbed antenna pattern tests. A unique application is the realistic simulation of sophisticated flight paths, including overhead tracking and demanding trajectories of fast objects such as sounding rockets. Likewise, dynamic tracking tests are feasible which provide crucial information about the antenna pedestal performance - particularly at high elevations - and reveal weaknesses in the autotrack control loop of tracking antenna systems. During acceptance tests of MORABA's new tracking antennas, a manned aircraft was never used, since the Flying Boresight surpassed all expectations regarding usability, efficiency, and precision. Hence, it became an integral part of MORABA's standard antenna setup and calibration procedures.
机译:用于校准和测试跟踪天线的地面的抗衡源的应用通常需要各种困难,主要是由于不需要的地面效果。为了避免这个问题,DLR Maraba开发了一个小型轻质,可调频率可调的S波段,安装在小型遥控多陆飞机上。高度准确的GPS支撑,位置和高度控制功能允许飞机在中空中的非常稳定的定位,以及精确的航点基,半自动飞行。与固定的近地防止光源相比,该飞行设置可以避免源区和天线之间的菲涅耳区域的障碍物。此外,它最大限度地减少了可以影响天线校准的地面反射和其他多径效应。此外,飞行钻探的大型操作范围简化了天线的远场中的测量,并允许不受干扰的天线图案测试。独特的应用是复杂的飞行路径的现实模拟,包括快速物体的开销跟踪和苛刻的轨迹,如探测火箭。同样地,动态跟踪测试是可行的,它提供了关于天线基座性能的重要信息 - 特别是在高升高处 - 并且揭示了跟踪天线系统的自动浪费控制回路中的弱点。在Maraba新的跟踪天线的验收测试期间,从未使用过载有载有载人的飞机,因为飞行僵局超过了关于可用性,效率和精确的所有期望。因此,它成为Maraba标准天线设置和校准程序的一个组成部分。

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