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Optimization of a linearly polarized radial line slot array antenna design for direct broadcast satellite services

机译:用于直接广播卫星业务的线性极化径向线缝隙阵列天线设计的优化

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摘要

Azimuthal components of beam squint design techniques for Linearly Polarized Radial Line Slot Array (LP-RLSA) antena was in the past chosen arbitrarily, which accounted for waste of quality design/simulation time and by extension the entire fabrication processes when poor design parameter is selected arbitrarily. This thesis introduces a more scientific method of identification and selection of azimuthal components (SØ) as a function of phi (Ø), thetaT (ƟT) and phiT (ØT) respectively via a numerical technique, which identifies optimal design parameters and formulates optimal equations. The thesis further studies the behaviour of dielectrics as it relates to the performance of the LP-RLSA antenas and has put in place suitable dielectric permittivity values required at Ku Band (12.25 - 12.75) GHz. Thus, a directivity value of more than 33.00 dBi was achieved at a frequency of 12.4 GHz with a reflection coeficient value less than -23.26 dB and a bandwidth of about 41% of 500MHz required. A radiation efficiency value of about 67% was achieved. Relationships between half power beam width (HPBW), slot widths (w) and antenna directivity (D) were studied, a new directivity relationship resulting from the study was formulated for the Ku Band (12.25 - 12.75) GHz. Research on the Ka Band LP-RLSA antenna design as an emerging technology for future satellite DBS service application at (21.4 - 22.0) GHz was done; CST MWS simulations were used, about 4 dBi higher in value of simulated directivity was obtained compared to the Ku Band design (12.25 - 12.75) GHz of same dish size (600 mm), with a bandwidth of about 41% of the 600 MHz required for the Ka Band DBS application at 21.699 GHz and 36.2 dBi realized. Good return loss performance of the Ka and Ku Bands design was achieved. Measured results for the Ku Band are in excellent agreement with the simulation results
机译:过去,任意选择用于线性极化径向线槽阵列(LP-RLSA)天线的斜视斜视设计技术的方位角分量,这会浪费质量设计/仿真时间,并且在选择较差的设计参数时会浪费整个制造过程。任意地。本文通过一种数值技术,介绍了一种更科学的方法来识别和选择作为phi(Ø),thetaT(ƟT)和phiT(ØT)的函数的方位角分量(SØ),该方法可以识别最佳设计参数并制定最佳方程式。本文进一步研究了电介质的性能,因为它与LP-RLSA天线的性能有关,并且已经确定了Ku波段(12.25-12.75)GHz所需的合适介电常数。因此,在频率为12.4 GHz时,指向性值大于33.00 dBi,反射系数值小于-23.26 dB,带宽约为500MHz的41%。达到约67%的辐射效率值。研究了半功率波束宽度(HPBW),缝隙宽度(w)和天线方向性(D)之间的关系,并针对Ku频段(12.25-12.75)GHz提出了新的方向性关系。已经完成了Ka Band LP-RLSA天线设计的研究,该天线设计是未来(21.4-22.0)GHz卫星DBS服务应用的新兴技术;使用CST MWS模拟,与相同碟形尺寸(600 mm)的Ku Band设计(12.25-12.75)GHz相比,模拟方向性值大约高4 dBi,带宽约为600 MHz的41%在21.699 GHz和36.2 dBi的Ka Band DBS应用中实现。 Ka和Ku Band设计具有良好的回波损耗性能。 Ku Band的测量结果与模拟结果非常吻合

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    Zakwoi Iliya Solomon;

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  • 年度 2015
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