Department of Electronic Information Engineering, Shenyang Aerospace University, Shenyang 110034, China.
Department of Civil Aviation, Shenyang Aerospace University, Shenyang 110034, China.
Sensors (Basel). 2023 Feb 25;23(5):2556. doi: 10.3390/s23052556.
In this study, a dual-tuned mode of liquid crystal (LC) material was proposed and adopted on reconfigurable metamaterial antennas to expand the fixed-frequency beam-steering range. The novel dual-tuned mode of the LC is composed of double LC layers combined with composite right/left-handed (CRLH) transmission line theory. Through a multi-separated metal layer, the double LC layers can be loaded with controllable bias voltage independently. Therefore, the LC material exhibits four extreme states, among which the permittivity of LC can be varied linearly. On the strength of the dual-tuned mode of LC, a CRLH unit cell is elaborately designed on three-layer substrates with balanced dispersion values under arbitrary LC state. Then five CRLH unit cells are cascaded to form an electronically controlled beam-steering CRLH metamaterial antenna on a downlink Ku satellite communication band with dual-tuned characteristics. The simulated results demonstrate that the metamaterial antenna features' continuous electronic beam-steering capacity from broadside to -35° at 14.4 GHz. Furthermore, the beam-steering properties are implemented in a broad frequency band from 13.8 GHz to 17 GHz, with good impedance matching. The proposed dual-tuned mode can make the regulation of LC material more flexible and enlarge the beam-steering range simultaneously.
在这项研究中,提出并采用了一种双调谐模式的液晶(LC)材料,应用于可重构超材料天线,以扩展固定频率波束转向范围。新型 LC 双调谐模式由双层 LC 与复合左右手(CRLH)传输线理论相结合构成。通过多层金属层,双层 LC 可独立加载可控偏置电压。因此,LC 材料呈现出四种极限状态,其中 LC 的介电常数可呈线性变化。基于 LC 的双调谐模式,在任意 LC 状态下,在三层基板上精心设计了具有平衡色散值的 CRLH 单元。然后,将五个 CRLH 单元级联,形成具有双调谐特性的 Ku 卫星通信波段下的电控波束转向 CRLH 超材料天线。仿真结果表明,该超材料天线在 14.4GHz 时具有从宽边到-35°的连续电子波束转向能力。此外,在 13.8GHz 至 17GHz 的宽频带上实现了波束转向特性,具有良好的阻抗匹配。所提出的双调谐模式可以使 LC 材料的调节更加灵活,并同时扩大波束转向范围。