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Isolation improvement for x-band FMCW radar transmit and receive antennas

机译:X波段FMCW雷达传输和接收天线的隔离改进

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In this research, improvement on antenna isolation for frequency modulated continuous wave (FMCW) radar by adjusting side lobe level (SLL) and air gap distance is presented. The radar has two separate and parallel antennas: transmit and receive antennas. Low SLL will introduce high antenna isolation. For achieving a good performance, the required SLL is set to a minimum of 13 dB to produce high isolation and maximum reflection (echo) on the antenna main lobe. The Chebyshev method was applied for improving the main lobe efficiency, which is by modifying incoming power distribution on each patch. The patch shape was rectangular and this shape is modified by inserting slots to change polarization direction from vertical to horizontal polarization. Antenna feeding is performed by using the proximity method that aims to reduce radiation effect from transmission lines. This results in low interference to the main antenna radiation. The SLL for Chebyshev method is about -30dB and, for Uniform distribution, the SLL is about -13dB. The antenna development was started from defining its configuration, design and simulation, and finalized by optimization. From the simulation results, Chebyshev method gives low SLL and higher isolation in comparison to that of uniform method. For the Chebyshev antenna array with a distance of 9cm, the value of S12 equals -77.18048 dB and S21 equals -77.18053 dB. While for uniform antenna array with 13cm air gap, the S12 equals 75.864015 dB and S21 equals -75.86401dB. Lower values of S12 and S21 show higher antenna isolation. From the experiments, it was shown that the air gap distance is not linearly related to the isolation level. There is a certain distance where the optimum isolation value can be achieved. For the Chebyshev antenna array, it was shown that the simulation and measurement results are very similar.
机译:在该研究中,提高了通过调节侧瓣级(SLL)和气隙距离来改进频率调制连续波(FMCW)雷达的天线隔离。雷达具有两个单独的和并行天线:发送和接收天线。低SLL将引入高天线隔离。为了实现良好的性能,所需的SLL设置为最小13 dB,以在天线主瓣上产生高隔离和最大反射(回波)。 Chebyshev方法应用于提高主叶效率,这是通过在每个贴片上修改输入的电力分布。贴片形状是矩形的,并且通过插入槽来改变该形状以将偏振方向从垂直变为水平极化。通过使用旨在减少传输线的辐射效果的接近方法来执行天线馈送。这导致对主天线辐射的干扰低。 Chebyshev方法的SLL约为-30dB,并且对于均匀分布,SLL约为-13dB。启动天线开发,从定义其配置,设计和仿真,并通过优化完成。根据仿真结果,与均匀法相比,Chebyshev方法提供低SLL和更高的隔离。对于距离9cm的Chebyshev天线阵列,S12等于-77.18048 dB和S21等于-77.18053 dB。虽然对于具有13cm气隙的均匀天线阵列,但S12等于75.864015dB和S21等于-75.86401dB。 S12和S21的较低值显示出更高的天线隔离。从实验中,显示出气隙距离与隔离水平没有线性相关。有一定距离可以实现最佳隔离值。对于Chebyshev天线阵列,显示模拟和测量结果非常相似。

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