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Study on Reconfigurable Coaperture Antenna Arrays Based on Time-Modulation and Retrodirective Techniques

机译:基于时间调制和回溯技术的可重构孔径天线阵列研究

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Time-modulation (TM) technique for array design is opening the way for the development of easy-reconfiguration, low-complexity, and high-accuracy antenna systems for modern wireless applications. In this study, four different scenarios of TM-based reconfigurable coaperture antenna arrays are introduced. The aims are to make use of the common antenna elements for the coaperture and to share the switches needed in TM technique to form the reconfiguration. For the reconfigurable functionality, the retrodirective (RD) technique is involved, and for the reconfigurable band, the synthesized transmission line (STL) technology is involved. Four proposed arrays are single-band time-modulated retrodirective and self-null-steering array (i.e., single-band TM-RDNA), single-band time-modulated/retrodirective/time-modulated retrodirective array (i.e., single-band TM-RDA), dual-band TM-RDA, and triband TM-RDA. In the single-band TM-RDNA, a frequency offset, which is equal to the TM frequency, between two time-modulated phase conjugators is introduced to realize the array capable of RD and self-null steering simultaneously at retransmitted frequency. In the single-, dual-, and triband TM-RDAs, the introduced TM-RDA functions as a low sidelobe RDA at carrier frequency, and as an extra benefit, it can function as a low sidelobe RDA at harmonic frequencies. The features, superiority, and inferiority of these TM-based reconfigurable coaperture arrays are discussed and summarized. To experimentally verify the feasibility of the proposed schemes, a four-element single-band TM-RDNA and single-band TM-RDA structures are constructed and tested.
机译:用于阵列设计的时间调制(TM)技术为现代无线应用中易于重新配置,低复杂度和高精度天线系统的开发开辟了道路。在这项研究中,介绍了基于TM的可重构协同孔径天线阵列的四种不同情况。目的是利用共同的天线元件进行协作,并共享TM技术所需的开关以形成重新配置。对于可重新配置的功能,涉及逆向(RD)技术,对于可重新配置的频段,涉及综合传输线(STL)技术。提出的四个阵列是单波段时间调制逆向和自零转向阵列(即,单波段TM-RDNA),单波段时间调制/逆向/时间调制的逆向阵列(即,单波段TM) -RDA),双频TM-RDA和三频TM-RDA。在单频带TM-RDNA中,引入了两个时间调制相位共轭器之间的等于TM频率的频率偏移,以实现能够在重发频率上同时进行RD和自调零的阵列。在单频带,双频带和三频带TM-RDA中,引入的TM-RDA在载波频率上充当低旁瓣RDA,并具有额外的好处,在谐波频率下可以充当低旁瓣RDA。这些基于TM的可重配置的coaperture阵列的功能,优劣,进行了讨论和总结。为了通过实验验证所提出方案的可行性,构建并测试了四元素单波段TM-RDNA和单波段TM-RDA结构。

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