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Twice optimised near-field scanning system for antenna characterisation

机译:两次优化的近场扫描系统,用于天线表征

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摘要

The near-field (NF) acquisition time depends on the sampling strategy and on the measurement hardware. Optimised sampling based on singular value optimisation dramatically reduces the number of measurement points and the scanning path length compared to conventional samplings, without impairing the far-field reconstruction. Furthermore, an optimised control approach, tracking a sufficiently smooth trajectory allows better performance in terms of velocity and precision, significantly reducing the scanning time. We show that the combined use of an optimised sampling and an optimised controller drastically reduces the measurement time. The sampling strategy provides a raster grid of optimally selected rows hosting samples optimally arranged according to a row-wise non-uniform distribution. The optimised control drives the NF scanner and the vector network analyser to acquire the data along each row by a continuous probe movement with a variable velocity, accelerating and decelerating between two consecutive sampling points. The sparsity of the NF locations enables a significant increase in the average speed between two consecutive points. The controller is realised with a proportional-integral-derivative law with a compensation signal and a filter downstream. The controller does not demand complex hardware and can be realised in an extremely simple, cheap and off-the-shelf solution.
机译:近场(NF)采集时间取决于采样策略和测量硬件。与常规采样相比,基于奇异值优化的优化采样大大减少了测量点的数量和扫描路径的长度,而不会影响远场重建。此外,优化的控制方法可跟踪足够平滑的轨迹,从而在速度和精度方面实现更好的性能,从而显着减少扫描时间。我们表明,优化采样和优化控制器的结合使用可大大减少测量时间。采样策略提供了一个最优选择的行的栅格网格,该栅格包含根据行非均匀分布最优安排的采样。优化的控制驱动NF扫描仪和矢量网络分析仪,以连续的探头移动速度可变地在两个连续的采样点之间加速和减速,从而沿每一行采集数据。 NF位置的稀疏性可以显着提高两个连续点之间的平均速度。该控制器通过比例积分微分定律和补偿信号以及下游的滤波器实现。该控制器不需要复杂的硬件,并且可以通过极其简单,廉价和现成的解决方案来实现。

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