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用于亚毫米波天文成像的片上集成双频宽带缝隙阵列天线设计

Design of an On-chip Dual-band Slot Antenna Array for Submillimeter-wave Imaging

  • 摘要: 该研究设计并优化了一种用于亚毫米波天文成像芯片的双频宽带缝隙阵列天线. 该天线阵列可以集成在亚毫米波天文成像芯片上实现信号接收和频率选择的功能, 同时阵列式天线有效约束了辐射方向, 并与望远镜系统的光路高度匹配, 从而提高了光学效率. 此设计不仅简化了成像系统前端光路的结构, 还有效降低了噪声, 提升了系统的灵敏度. 双频天线的带宽覆盖中心频率为230 GHz和350 GHz两个亚毫米波常用探测窗口; 采用阻抗渐变式的微带线构成馈电网络, 同时满足双频阵列天线在两个频率窗口上的阻抗匹配; 以双频缝隙天线单元组成8×8阵列, 该阵列天线在230 GHz最大增益为15.3 dBi、主瓣宽度为21.1^\circ、旁瓣抑制为−11.4 dB; 在350 GHz最大增益为15.5 dBi、主瓣宽度为18.7^\circ、旁瓣抑制为−13.5 dB, 具有高增益低旁瓣的特性, 且波瓣与成像系统的光路相匹配. 进一步以该天线的设计思想在微波波段加工并实测了15 GHz和23 GHz的缝隙天线单元与阵列, 其实测结果与仿真结果有较高的一致性, 验证了该片上集成缝隙阵列天线用于亚毫米波成像芯片的可行性.

     

    Abstract: A dual-band slot antenna array for submillimeter-wave imaging is designed and optimized in this study. The antenna array can be integrated on the submillimeter-wave imaging chip to realize the signal reception and frequency selecting. The slot antenna array effectively constrains the radiation direction which matches the optical path of the imaging system, thus improving the optical efficiency. This design not only simplifies the optical path, but also effectively reduces the noise and improves the sensitivity of the system. The bandwidth of the dual-band antenna covers the center frequency of 230 GHz and 350 GHz, two common detection windows of submillimeter wave. The feed network is composed by impedance tapering microstrip lines to meet the impedance matching on two broadband windows. The maximum gain, the main lobe width, the sidelobe suppression of the 8×8 slot antenna array are 15.3 dBi, 21.1^\circ, −11.4 dB at 230 GHz, and 15.5 dBi, 18.7^\circ, −13.5 dB at 350 GHz, respectively, which has the characteristics of high gain and low sidelobe, and the main lobe is matched with the optical path of the imaging system. To confirm this design concept, 15 GHz and 23 GHz slot antenna units and arrays are fabricated and measured in the microwave band. The measured results are in good agreement with the simulated results, which validates the feasibility of the on-chip dual-band slot antenna array for submillimeter-wave imaging.

     

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