Electronically Controlled Frequency Agile Beam Scanning Reflectarray Antenna with Integrated Control Unit

Kavitha Narayanasamy, Kirubaveni Savarimuthu, Ikram Khan
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Abstract

This paper reports the design, development, fabrication, and testing of a 225-element reconfigurable reflectarray (RRA) antenna with frequency agility and beam steering capabilities. The 15 15 (18.75 cm) RRA operating in the Ku band downlink frequency range (11.8 -12.2 GHz) of fixed satellite services (FSS) produces dual resonances switched between uplink frequency range (15-18 GHz) of FSS and earth exploration satellite range of 9.5-9.8 GHz (X Band). To attain reconfigurable multiple resonances, the unit cell is designed with a Malta cross of varying slot lengths interconnected to a square ring via a PIN diode. In the OFF state of the PIN diode connected between the concentric elements, a phase variation of 360° is obtained at 12 GHz and 9.5 GHz by varying the size of the Malta cross. By increasing the width of the outer ring in the ON state of the PIN diode, a dual resonance is obtained at 12 GHz and 17 GHz with 360° phase agility. The beam scanning is attempted at X band frequency by controlling the capacitance offered by the varactor diode connected between an inductive element and Malta cross. The proposed RRA offers 22.16 dBi, 24.5 dBi and 18.43 dBi simulated gain at 17 GHz, 12 GHz, and 9.5 GHz respectively. The simulated sidelobe levels (SLLs) and cross-polarization levels are -14.7 dB and less than -32 dB respectively. The proposed compound reconfigurable reflectarray befits fixed and mobile satellites, earth exploration satellites, radiolocation, aeronautical radio navigation, and deep space research.
带有集成控制单元的电控频率捷变波束扫描反射天线
本文报道了具有频率敏捷性和波束转向能力的225单元可重构反射天线(RRA)的设计、开发、制造和测试。15- 15 (18.75 cm) RRA工作在固定卫星业务(FSS)的Ku波段下行频率范围(11.8 -12.2 GHz),在FSS上行频率范围(15-18 GHz)和地球探测卫星范围(9.5-9.8 GHz) (X波段)之间产生双共振。为了实现可重构的多重共振,单元电池被设计成具有不同槽长度的马耳他十字,通过PIN二极管连接到一个方形环。在连接在同心元件之间的PIN二极管的OFF状态下,通过改变马耳他十字的大小,在12 GHz和9.5 GHz处获得360°的相位变化。通过增加PIN二极管ON状态下外环的宽度,可以在12 GHz和17 GHz获得360°相位敏捷性的双谐振。通过控制连接在电感元件和马耳他十字之间的变容二极管提供的电容,尝试在X波段频率上进行波束扫描。所提出的RRA在17 GHz、12 GHz和9.5 GHz分别提供22.16 dBi、24.5 dBi和18.43 dBi模拟增益。模拟的副瓣电平(SLLs)和交叉极化电平分别小于-32 dB和-14.7 dB。所提出的复合可重构反射天线适用于固定和移动卫星、地球探测卫星、无线电定位、航空无线电导航和深空研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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