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Reconfigurable nested ring-split ring transmitarray unit cell employing the element rotation method by microfluidics

机译:微流控元件旋转法可重构的嵌套环-拆分环发射阵列单位细胞

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摘要

A continuously tunable, circularly polarized X-band microfluidic transmitarray unit cell employing the element rotation method is designed and fabricated. The unit cell comprises a double layer nested ring-split ring structure realized as microfluidic channels embedded in Polydimethylsiloxane (PDMS) using soft lithography techniques. Conductive regions of the rings are formed by injecting a liquid metal (an alloy of Ga, In, and Sn), whereas the split region is air. Movement of the liquid metal together with the split around the ring provides 360° linear phase shift range in the transmitted field through the unit cell. A circularly polarized unit cell is designed to operate at 8.8 GHz, satisfying the necessary phase shifting conditions provided by the element rotation method. Unit cell prototypes are fabricated and the proposed concept is verified by the measurements using waveguide simulator method, within the frequency range of 8-10 GHz. The agreement between the simulation and measurement results is satisfactory, illustrating the viability of the approach to be used in reconfigurable antennas and antenna arrays. © 2015 IEEE.
机译:设计并制造了采用元件旋转法的连续可调,圆偏振的X波段微流体发射阵列单位晶胞。晶胞包括双层嵌套的环裂环结构,该结构是使用软光刻技术实现为嵌入聚二甲基硅氧烷(PDMS)中的微流体通道。环的导电区域是通过注入液态金属(Ga,In和Sn的合金)形成的,而分开的区域是空气。液态金属连同裂隙在环上的运动在通过晶胞的透射场中提供了360°线性相移范围。圆极化单位单元设计为在8.8 GHz的频率下运行,满足元件旋转方法提供的必要相移条件。制造了晶胞原型,并通过使用波导模拟器方法在8-10 GHz频率范围内进行测量,验证了提出的概念。仿真和测量结果之间的一致性令人满意,这说明了在可重构天线和天线阵列中使用该方法的可行性。 ©2015 IEEE。

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