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Miniaturization and Optimization of Electrically Small Antennas, with Investigation into Emergent Fabrication Techniques

机译:电小型天线的小型化和优化,以及新兴制造技术的研究

摘要

With the paradigm shift in personal communications favouring wireless over wired, the demand for efficient, low-cost, and compact antennas is booming. The proliferation of mobile electronic devices (laptops and tablets, fitness trackers, ‘smart’ phones and watches), together with the desire for longer battery life, poses a unique challenge to antenna designers; there is an unavoidable trade-off between miniaturization and performance (in terms of range and efficiency).udThe size of an antenna is inherently linked to the wavelengths(s) of the electromagnetic waves that it must transmit and/or receive. Due to real-estate pressures, most modern antennas found in electronics are classed as electrically small, i.e. operating at wavelength(s) many times greater than their largest dimension. Theory dictates that the best possible compromise between size and performance is achievable when an antenna fully occupies a volume, the radius of which is defined by an imaginary sphere circumscribing its largest dimension.udThis Thesis demonstrates the design and optimization of low-cost, easy-to-fabricate, electrically small antennas through the integration of novel digitated structures into a family of antennas known as inverted-F. The effects of these digitated structures are catalogued using simulated models and measured prototypes throughout.udWhereas the limitations of traditional industrial processes might once have constrained the imaginations of antenna designers, there is now tremendous potential in successful exploitation of emergent manufacturing processes – such as additive manufacturing (or 3D printing) – to realize complex, voluminous antenna designs.udThis Thesis also presents pioneering measured results for three-dimensional, electrically small antennas fabricated using powder bed fusion additive manufacturing. The technology is demonstrated to be well suited for prototyping, with recommendations provided for further maturation. It is hoped that these promising early results spur further investigation and unleash bold new avenues for a new class of efficient, low-cost, and compact antennas.
机译:随着个人通信模式的转变,偏爱有线无线,对高效,低成本和紧凑型天线的需求正在迅速增长。移动电子设备(笔记本电脑和平板电脑,健身追踪器,“智能”电话和手表)的激增,以及对更长电池寿命的渴望,对天线设计人员构成了独特的挑战;在微型化和性能之间(在范围和效率方面)不可避免地要取舍。 ud天线的尺寸与它必须发送和/或接收的电磁波的波长固有地联系在一起。由于房地产压力,电子设备中发现的大多数现代天线都被归类为电气尺寸小的天线,也就是说,其工作波长比其最大尺寸大许多倍。理论表明,当天线完全占据一个体积时,可以在尺寸和性能之间取得最佳的折衷,其半径由外接其最大尺寸的虚球定义。 ud本文证明了低成本,易用性的设计和优化。通过将新型数字化结构集成到称为倒F的一系列天线中来制造电小的天线。整个过程中,使用模拟模型和测量的原型对这些数字化结构的影响进行分类。 ud尽管传统工业流程的局限性曾经曾经限制了天线设计人员的想象力,但如今成功开发新兴制造工艺(如添加剂)的潜力巨大制造(或3D打印)–以实现复杂的大量天线设计。 ud本文还介绍了使用粉末床融合增材制造技术制造的3D小型电子天线的开创性测量结果。事实证明该技术非常适合用于原型制作,并提供了进一步成熟的建议。希望这些有希望的早期结果能刺激进一步的研究,并为新型的高效,低成本和紧凑型天线释放大胆的新途径。

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    Mufti Saad;

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  • 年度 2017
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