广角扫描平面相控阵天线

S. Xiao, Chunmei Liu, Ren Wang, Bingzhong Wang
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引用次数: 3

摘要

只提供摘要形式。相控阵天线由于扫描速度快、扫描精度高,在许多领域得到了广泛的应用。在许多情况下,需要低姿态和易于集成。广角扫描是一种很有前景的扫描方式,特别是在低空目标搜索中。实现广角扫描主要有两个条件。一方面,微带天线单元的波束宽度足够宽。另一方面,在相控阵天线进行广角扫描时,应适当控制元件之间的耦合,从而影响元件与端口之间的阻抗匹配。为了扩大扫描角度,做了许多改进。扩大扫描覆盖范围的方法主要有四种。首先,利用方向图可重构天线来扩大波束宽度得到了广泛的应用。通常有左模式、右模式和宽边模式三种工作模式,通过改变PIN二极管或开关的工作状态来实现。由方向图可重构天线组成的相控阵可以在-70°到70°范围内进行近似扫描[1]。其次,基于表面波的天线阵列具有广角扫描特性。表面波通常被认为是一种不利影响,它扩大了元件之间的耦合。然而,在平面相控阵中,表面波可以用来扩大扫描范围。通过控制表面波的传播来补偿零辐射。表面波的控制是通过引入与光子晶体类似的HIS亚波长结构来实现的。这种阵列天线能够在-85°到85°范围内进行扫描[2]。第三,根据反射镜理论,有两种类型的天线可用于实现广角扫描。一种是将电流与磁性导体紧密平行(JpM)。磁性导体是由亚波长结构组成的超材料实现的。另一种方法是将磁电流与电导体紧密平行(MpE)。根据等效理论,将微带天线三面接地即可获得磁电流。由JpM或MpE天线组成的相控阵天线理论上具有优异的扫描整个上半空间的性能[3][4]。最后,基于时间反转的广角扫描阵列优化算法可以考虑到两者之间的耦合。孔径分布可自适应获得[3]。综上所述,利用上述方法可以得到广角扫描相控阵。然而,这一领域仍存在许多挑战。宽带二维广角扫描相控阵的研究将受到更多的关注。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wide-angle scanning planar phased array antenna
Summary form only given. The phased array antenna has been widely used in many applications due to the high speed and the accuracy of scanning. Low profile and easily integrating are required under many situations. Wide-angle scanning is expected, especially in low elevation target searching. There are two main conditions in the implementation of the wide-angle scanning. On the one hand, the beam-width of microstrip antenna element is wide enough. On the other hand, the coupling between elements which will affect the impedance matching between the elements and ports should be properly controlled while the phased array antenna is scanning to the wide angles. Many improvements have been done to enlarge the scanning angle. There are four main methods to broaden the scanning coverage. First, enlarging the beam-width by using pattern reconfigurable antenna is widely used. There are usually three working modes, left mode, right mode and broadside mode, which are implemented by changing the working status of the PIN diodes or switches. The phased array which is composed of the pattern reconfigurable antenna can scan from -70 ° to 70 ° approximately [1]. Secondly, the antenna array based on the surface wave has wide-angle scanning characteristic. The surface wave is usually regarded as adverse effect which enlarges the coupling between elements. However, in the planar phased array, the surface wave can be used to enlarge the scanning range. The null radiation will be compensated by controlling the propagation of surface wave. The controlling of surface wave is achieved by leading the subwavelength structure like HIS which is similar with the photonic crystal. This kind of array antenna is able to scan from -85°to 85°[2]. Thirdly, according to the mirror theory, there are two types of antenna which can be used to realize the wide-angle scanning. One is putting the electric current parallel to the magnetic conductor closely (JpM). The magnetic conductor is realized by metamaterial consisting of the sub-wavelength structures. The another one is putting magnetic current parallel to the electric conductor closely (MpE). Based on the equivalent theory, the magnetic current can be obtained by grounding three sides of the microstrip antenna. The phased array antenna which is composed of the JpM or MpE antenna has excellent performance of scanning through the whole upper half space theoretically [3] [4]. Lastly, the algorithm based on the time reversal (TR) can take the coupling into account to optimize the wide-angle scanning array. The aperture distribution can be obtained adaptively [3]. In conclusion, a wide-angle scanning phased array can be obtained by utilizing the methods mentioned above. However, there are still many challenges in this field. More attention will be paid to the wide-band 2D wide-angle scanning phased array research.
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