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Wideband planar automotive antennas for use in conjunction with polymeric composite structures

机译:宽带平面汽车天线,用于与聚合物复合结构结合使用

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摘要

Automotive wireless communications have rapidly developed in recent years with the emergence of many new communications technologies. Only a couple of decades ago most vehicles were fitted with only one antenna for AM and FM radio reception. By comparison, today's cars may be fitted with a multitude of antennas to communicate at many different frequencies for a wide variety of applications. This thesis proposes the use of wideband planar antennas in conjunction with polymeric composite panels to meet the communication requirements of vehicles both now and into the future. Sheet Moulding Compound (SMC) is a mature composite technology which is widely used in the automotive industry to form external car body panels by compression moulding. An SMC body panel could be utilized to create an RF-transparent aperture in a vehicle's body structure. A wideband antenna could be attached to the underside of such a panel, or embedded into it during the compression moulding process. This would create a multifunctional antenna component which, when painted, would be indistinguishable from an ordinary section of bonnet, roof or trunk. The research presented in this thesis covers a variety of related topics. The electrical and mechanical properties of SMC are examined using various techniques. Optimal manufacturing process parameters are determined, which produce minimal deformation on an embedded antenna substrate during the compression moulding process. The effect of automotive paints on the impedance and radiation behaviour of planar antennas is determined by experimental means, including those paints which have a 'metallic' effect. Two wideband antennas designed for vehicular use are proposed - the Optimised PICA and the WiPlaVe antenna. The antennas are low profile, fabricated on low-cost FR-4 substrates, and provide an impedance match over a wide range of frequencies of interest in the automotive environment. A novel diplexer-divider-combiner device is presented. The device is implemented by exploiting Complimentary Split Ring Resonators, and improves the radiation performance of the WiPlaVe antenna at low frequencies. The overall performance of the proposed wideband vehicular antenna solution is validated by simulation and measurement in a variety of circumstances. A wideband antenna is embedded into the surface of an SMC ute tailgate component, and the radiation of the structure is characterized in an anechoic chamber. The effect of bending a wideband antenna is also evaluated by simulation and measurement. CST Microwave Studio© is employed to simulate the O-PICA antenna on a full-size vehicle with an SMC roof panel. The same full-sized configuration is implemented in hardware with a GPS receiver. A comparison of the performance of the O-PICA antenna for GPS purposes is made against a commercial GPS patch antenna. The O-PICA antenna is found to provide comparable GPS performance with the commercial narrowband antenna, demonstrating the value of the integrated wideband vehicular antenna proposal.
机译:随着许多新的通信技术的出现,近年来汽车无线通信发展迅速。仅仅几十年前,大多数车辆都只装有一个天线用于AM和FM广播接收。相比之下,当今的汽车可能装有大量天线,可以在许多不同的频率下进行通信,以用于各种应用。本文提出将宽带平面天线与聚合物复合板结合使用,以满足现在和将来车辆的通信需求。片状模塑料(SMC)是一种成熟的复合技术,在汽车工业中广泛用于通过压缩成型形成车身外部面板。 SMC车身面板可用于在车辆的车身结构中创建RF透明孔。宽带天线可以连接到这种面板的底面,或者在压缩成型过程中嵌入其中。这将创建一个多功能的天线组件,该组件在涂漆时将与引擎盖,车顶或行李箱的普通部分无法区分。本文提出的研究涵盖了多个相关主题。使用各种技术检查SMC的电气和机械性能。确定最佳制造工艺参数,该参数在压缩成型过程中在嵌入式天线基板上产生最小的变形。汽车涂料对平面天线阻抗和辐射性能的影响是通过实验手段确定的,包括那些具有“金属”效应的涂料。提出了两种设计用于车辆的宽带天线-优化的PICA和WiPlaVe天线。这些天线是薄型的,是在低成本FR-4基板上制造的,并且在汽车环境中所关注的广泛频率范围内提供阻抗匹配。提出了一种新颖的双工器-分频器-组合器设备。该设备通过利用免费的开口环谐振器实现,并改善了WiPlaVe天线在低频下的辐射性能。所提出的宽带车载天线解决方案的整体性能在各种情况下均通过仿真和测量得到了验证。宽带天线嵌入SMC ute尾门组件的表面,该结构的辐射在无回声室中表征。还通过仿真和测量来评估弯曲宽带天线的效果。 CST Microwave Studio©用于模拟带有SMC顶板的全尺寸车辆上的O-PICA天线。在具有GPS接收器的硬件中实现了相同的全尺寸配置。将O-PICA天线用于GPS的性能与商用GPS贴片天线进行了比较。发现O-PICA天线可提供与商用窄带天线相当的GPS性能,从而证明了集成宽带车载天线方案的价值。

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