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A Computer-Aided Approach for Designing Edge-Slot Waveguide Arrays

机译:设计边缘缝隙波导阵列的计算机辅助方法

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Traditional techniques for designing resonant edge-slot waveguide arrays have required an iterative trial-and-error process of measuring slot data from several prototypes. Since very little meaningful data has been published, this technology remains relatively immature and prohibitive for many smaller programs that could benefit from some advantages this antenna has to offer. A new Computer-Aided Design technique for designing resonant edge-slot waveguide arrays was used to successfully design such an X-band radiometer antenna for the NASA Light Rainfall Radiometer (LRR) instrument. Having the ability to rapidly create such an extremely accurate and efficient antenna design without the need to manufacture prototypes has also enabled inexpensive research that promises to improve the system-level performance of microwave radiometers for upcoming space-flight missions. This paper will present details of the LRR antenna design and describe some other current edge-slot array accomplishments at Goddard Space Flight Center.
机译:用于设计谐振边缘缝隙波导阵列的传统技术需要迭代的反复试验过程,以测量来自多个原型的缝隙数据。由于已经发布了很少的有意义的数据,因此该技术相对较不成熟,并且对于许多较小的程序来说是禁止的,这些程序可能会受益于该天线必须提供的某些优点。一种新的计算机辅助设计技术(用于设计谐振槽缝波导阵列)被成功地设计用于NASA雨量辐射计(LRR)仪器的X波段辐射计天线。无需制造原型就能够快速创建这种极其精确和高效的天线设计的能力,也使廉价的研究成为可能,该研究有望为即将到来的太空飞行任务提高微波辐射计的系统级性能。本文将介绍LRR天线设计的详细信息,并描述Goddard太空飞行中心目前的其他一些边缘槽阵列技术。

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