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Design and manufacturing of a 3-D conformal slotted waveguide antenna array in Ku-band based on Direct Metal Laser Sintering

机译:基于直接金属激光烧结的Ku波段3-D共形缝隙波导天线阵列的设计与制造

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One of the growing trend in antennas is to address multifunctional systems, providing direct space saving and cost reduction. A consideration for future generation antennas is to replace the classical planar geometry with new functionalities. Three-dimensional (3-D) / conformal antennas offer significant advantages for such system. However, traditional manufacturing processes limit their realization. Additive Manufacturing have been identified as very promising solutions to overcome the dimensional challenge that 3-D components represent. These technologies enable the manufacturing of complex and conformal structures and goes beyond the conventional subtractive manufacturing techniques. In this contribution we propose to evaluate the manufacturing capacities of the Direct Metal Laser Sintering (DMLS). For this purpose, we need an easy-to-test antenna structure containing pertinent features representative of all complication we can run into when designing a complex antenna, including phased array antenna. We propose a conformal slotted waveguide antenna arrays (SWAA) operating in Ku band. The electrical performances of the device have been compared between simulation with ANSYS® HFSS™ software and measurements. Despite a mismatch in the reflection parameter, good results are obtained in gain. They enable us to envision promising future achievements and a better mastering of the global set of parameters.
机译:天线的增长趋势之一是解决多功能系统问题,从而直接节省空间并降低成本。下一代天线的考虑因素是用新功能替代经典的平面几何形状。三维(3-D)/保形天线为此类系统提供了明显的优势。但是,传统的制造工艺限制了它们的实现。增材制造已被认为是克服3D组件所代表的尺寸挑战的非常有前途的解决方案。这些技术使制造复杂和共形的结构成为可能,并且超越了传统的减法制造技术。在此贡献中,我们建议评估直接金属激光烧结(DMLS)的制造能力。为此,我们需要一种易于测试的天线结构,其中应包含代表设计复杂天线(包括相控阵天线)时可能遇到的所有复杂情况的相关特征。我们提出了一个在Ku波段工作的共形缝隙波导天线阵列(SWAA)。在使用ANSYS®HFSS™软件进行的仿真与测量之间进行了比较,比较了该设备的电气性能。尽管反射参数不匹配,但仍获得了良好的增益结果。它们使我们能够设想有希望的未来成就,并更好地掌握全球参数集。

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