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Efficient Stacked Cylindrical Dielectric Resonator Antenna for Anticollision Short Range Radar at 79GHz

机译:适用于79GHz防撞短程雷达的高效叠层圆柱介质谐振天线

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This work presents the design of a high gain Stacked Cylindrical Dielectric Resonator Antenna (Sc. CDRA) fed by a micro-strip line for anti-collision radar SRR application at 79 GHz. The first proposed stacked antenna, which is resonating at 79 GHz and has a simulated gain of 8.39dB, is formed by two stacked cylindrical dielectric resonators (DR) materials of dielectric constants values respectively 17.9 and 16.9; but relatively near maximum values, of the main and the side lobs, remains a disadvantage of this first design. In order to increase the antenna' performances such as lowering return loss values, enhancing gain and, particularly, reducing radiation patterns side lobs magnitudes, we have added another cylindrical DR having a low permittivity value of 9. The simulated single Three Sc CDRA has a high gain (11.8 dB) and a narrow radiation beam where half power beam width (HPBW) is 35 degree at 79 GHz. Far field radiation patterns and return loss parameter of the structure have been investigated to extract the optimal design where results demonstrated a very low S
机译:这项工作提出了由微带线馈电的高增益堆叠式圆柱形介质谐振天线(Sc。CDRA)的设计,用于79 GHz的防撞雷达SRR应用。提出的第一个堆叠天线以79 GHz的频率谐振,并具有8.39dB的模拟增益,它是由两种介电常数分别为17.9和16.9的堆叠圆柱介质谐振器(DR)材料形成的;但是主瓣和旁瓣的最大值相对接近,仍然是该第一种设计的缺点。为了提高天线性能,例如降低回波损耗值,增强增益,尤其是降低辐射方向图旁瓣幅度,我们添加了另一个圆柱介电层,其介电常数值为9。模拟的单个3 Sc CDRA具有一个高增益(11.8 dB)和窄辐射束,在79 GHz时,半功率束宽度(HPBW)为35度。研究了该结构的远场辐射方向图和回波损耗参数,以提取最佳设计,结果表明其S值非常低

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