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Reflection Reduction Through Modal Filtering for Integrated Antenna Measurements Above 100 GHz

机译:通过模态滤波减少反射,用于100 GHz以上的集成天线测量

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Feeding integrated antennas during a measurement requires special feeding structures. Due to the small antenna dimensions, these feeding structures are often much bigger than the antenna under test (AUT) itself and with chip sizes of around 1 mm2, the achievable separation between antenna and feed is limited. Wafer probes have to be used to feed the AUT during passive antenna measurements and present a large reflective surface in close proximity to the AUT. Reflections from the wafer probe cause interference on the measurement surface and distort the results. The same is true for active antenna measurements, where bondwires and the package can have a significant effect on the radiated fields. The fragility and size of the components do not allow to reduce reflections with absorbers, which is why modal filtering was used in this paper to mitigate undesired reflections and improve the measurement result through postprocessing. Two issues that limit the performance of the algorithm are discussed, namely, phase center inaccuracies of the AUT and a limited measurement surface. It is shown that modal filtering is applicable to integrated antenna measurements at frequencies over 100 GHz and that a significant improvement in the measured radiation pattern can be achieved. Furthermore, it is shown that the postprocessed results make it possible to measure the directivity of integrated antennas, despite strong probe reflections.
机译:在测量期间为集成天线供电需要特殊的供电结构。由于天线尺寸小,这些馈电结构通常比被测天线(AUT)本身大得多,并且芯片尺寸约为1 mm2,因此天线与馈电之间可实现的间隔受到限制。在无源天线测量过程中,必须使用晶片探针为AUT供电,并在靠近AUT的地方提供较大的反射表面。晶圆探针的反射会在测量表面上造成干扰并使结果失真。有源天线测量也是如此,其中键合线和封装可能会对辐射场产生重大影响。组件的易碎性和尺寸不允许减少吸收体的反射,这就是为什么在本文中使用模态滤波来减轻不希望的反射并通过后处理改善测量结果的原因。讨论了限制算法性能的两个问题,即AUT的相位中心不准确和测量表面受限。结果表明,模态滤波适用于频率超过100 GHz的集成天线测量,并且可以显着改善测得的辐射方向图。此外,表明尽管存在强烈的探头反射,后处理结果仍可以测量集成天线的方向性。

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