Greco Francesco, Arnieri Emilio
Millimeter-Wave Antennas and Integrated Circuits Laboratory (MAIC), DIMES University of Calabria, 87036 Arcavacata, Italy.
Sensors (Basel). 2022 Mar 11;22(6):2187. doi: 10.3390/s22062187.
A dual-band linear-to-circular planar polarization converter based on a multilayer printed circuit board (PCB) is proposed and demonstrated. Each cell of the periodic surface is formed by six substrate layers separated by five foam spacers. The three top layers are identical and contain an 'I'-type strip, while the three layers on the bottom side are realized with three identical Jerusalem crosses (JC). A linearly polarized (LP) wave tilted 45° relative to the - and -axis of the converter is used to illuminate the polarizer. In this configuration, right-handed circularly polarized (RHCP) waves are generated at the Ka-band while left-handed circularly polarized (LHCP) waves are generated at the K-band. An equivalent circuit model based on transmission lines is proposed and used to design the polarizer together with full-wave simulations. The simulated/measured axial ratio (AR) remains below 3 dB in the bands 19.4-21.8 GHz (12.5%) and 27.9-30.5 GHz (8.7%) with an insertion loss better than 0.5 dB.
提出并演示了一种基于多层印刷电路板(PCB)的双频段线性到圆极化平面极化转换器。周期性表面的每个单元由六个基板层和五个泡沫间隔层组成。顶部三层相同,包含一个“I”型条带,而底部三层由三个相同的耶路撒冷十字(JC)实现。使用相对于转换器的x轴和y轴倾斜45°的线极化(LP)波来照射极化器。在这种配置下,在Ka波段产生右旋圆极化(RHCP)波,在K波段产生左旋圆极化(LHCP)波。提出了一种基于传输线的等效电路模型,并与全波模拟一起用于设计极化器。在19.4-21.8 GHz(12.5%)和27.9-30.5 GHz(8.7%)频段内,模拟/测量的轴比(AR)保持在3 dB以下,插入损耗优于0.5 dB。