带缺陷接地结构的微带馈电梯形天线阵列

S. Santhanam, Thiruvalar Selvan Palavesam
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引用次数: 1

摘要

本文设计了一种具有方形接地缺陷的梯形贴片微带馈电天线阵列,对2 ~ 3ghz S波段应用时的回波损耗、驻波比、增益和辐射方向图进行了详细的天线参数研究。通过在垂直馈电点的对面蚀刻方形来破坏一半的地面,提高了布置在2 × 2阵列中的四辐射元件的带宽和辐射性能。在FR4衬底上制造了30 x 70 x 1.6 mm尺寸的结构,用于低成本应用,并在三个不同的平面上分析了性能。通过与全接地的四元阵列进行比较,结果表明,有缺陷接地的四元阵列性能得到改善,回波损耗为-34.687 dB,与1.038的驻波比吻合较好。并对进给长度和衬底厚度进行了参数化研究,优化了结构尺寸的确定。研究表明,通过减小衬底厚度和增加进给长度,可以提高减损性能。对全接地和缺陷接地的前视图进行了仿真比较,结果表明,缺陷接地结构的驻波比从2.28降至1.03,损耗降低了-22 dB。利用CST软件对所设计的结构进行了仿真,仿真结果对比表明,所设计的结构可用于带宽为120 MHz、增益为3.52 dBi的机场监视雷达等S波段应用。为了更好地理解,将所提出的天线阵列与文献中现有的天线在带宽增益、反射系数和缺陷类型方面进行了比较。
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Microstrip Feed Trapezoidal Shape Antenna Array with Defected Ground Structure for S Band Applications
In this proposal new trapezoidal patch microstrip feed antenna array with ground defected by square shape is designed for detailed antenna parameter study in terms of return loss, VSWR, gain and radiation pattern for S band applications from 2 to 3 GHz. The bandwidth and radiation properties of four radiating element arranged in 2 x 2 array has been improved by defecting half of the ground by etching square shape opposite to the vertical feed point. 30 x 70 x 1.6 mm dimension structure has been fabricated in FR4 substrate for low cost applications and performance analyzed in three different planes. With comparison of four element array with full ground, the proposed array with defected ground has proved the improvement in behavior with return loss of -34.687 dB and ideally fit with VSWR of 1.038. Parametric study with feed length and substrate thickness has also been performed optimized decision of structure dimension. This study reveals that by reducing the substrate thickness and increasing the feed length, we can improve the performance of loss reduction. The front view has been simulated with full ground and defected ground for comparison and the compared results shows that the loss reduction of -22 dB has been achieved with VSWR value of 1.03 from 2.28 for defected ground structure. The designed structure has been simulated with CST software and the comparison of simulated results has conform that the proposed structure can be used for S band application like airport surveillance radars with wide bandwidth of 120 MHz and gain of 3.52 dBi. Comparison has been made between the proposed antenna array and the antennas available in literature with respect to bandwidth gain, reflection coefficient and defection type for better understanding.
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