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Implementation of a combination planar and spherical near-field antenna measurement system using an industrial 6-axis robot

机译:使用工业6轴机器人实现平面和球形近场组合天线测量系统的实现

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Near-field antenna test systems are typically designed to optimize measurement results for a specific type of antenna. The measurement system is selected and sized based on the antenna aperture dimensions, directivity, weight and operating frequency, among other parameters. These factors are used to select either a planar, cylindrical, or spherical near-field test system for the given antenna test requirements. Antennas with different characteristics may not be compatible with the selected range and often require costly upgrades to the existing range or a different range altogether. One solution to test a wide variety of antenna types is a combination planar-cylindrical-spherical (PCS) test system. These systems usually require some level of facility re-configuration and present drawbacks when switching between the various modes of operation. The adaptation of a six-axis robotic test system is an attractive solution in these situations, as the system's flexibility allows for rapid reconfiguration that is inherent to the system. This allows the user to select the optimal test solution for the antenna under test with little effort. This paper presents the performance of a six-axis robotic near-field measurement system showing near-field modes of operation and the system's performance in antenna measurements when compared to a traditional spherical near-field range.
机译:近场天线测试系统通常设计用于优化特定类型天线的测量结果。根据天线孔径尺寸,方向性,重量和工作频率以及其他参数来选择和确定测量系统的大小。这些因素用于选择给定天线测试要求的平面,圆柱或球形近场测试系统。具有不同特性的天线可能与所选范围不兼容,并且通常需要昂贵地升级到现有范围或完全不同的范围。一种测试多种天线类型的解决方案是组合平面圆柱球形(PCS)测试系统。这些系统通常需要某种程度的设备重新配置,并且在各种操作模式之间切换时会出现缺点。在这些情况下,采用六轴机器人测试系统是一种有吸引力的解决方案,因为该系统的灵活性允许对系统固有的快速重新配置。这使用户可以毫不费力地为被测天线选择最佳测试解决方案。本文介绍了六轴机器人近场测量系统的性能,与传统的球形近场范围相比,该系统显示了近场操作模式,并且该系统在天线测量中的性能也得到了提高。

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