Theoretical and Experimental Studies of Properties of L, M-BAND Waveguide Slotted Antenna Arrays

S. Katin, A. V. Kashin, E. A. Shorokhova, I. Illarionov
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Abstract

Waveguide slotted antenna arrays (WSAA) are the special class of multibeam microwave antennas, which are widely used both in independent transmitting or receiving devices, and in the elements of complex antenna system. Nowadays WSAA is one of perspective airborne antenna system which has found wide application in radiolocation, radionavigation and radiocommunication devices. Being multiple beam airborne antenna system, WSAA have a number of incontestable advantages: (i) absence of projecting parts; (ii) simple realization of optimum antenna radiation characteristics by means of forming so much of the main lobes and their directivity, width of the main lobes, side radiation level, etc. In Measuring Systems Research Institute (NIIIS) the procedure of scientific research, design and production technology for rectangular multiple beam millimeter WSAA with specified radiation parameters have been introduced. Taking into account specificity of the WSAA as airborne antenna systems, we have studied the case of the round aperture array. Recently the broadband and ultra broadband antenna systems have been designed. The results of bandwidth research are also presented in this paper. Theoretical and experimental studies have demonstrated that: (i) one of the possible ways for WSAA overall dimensions optimization is rounding of its rectangular aperture, that leads to improvement of WSAA radiating properties, namely sidelobe level decreasing; (ii) WSAA can be used for radiation - reception of broadband signals with the bandwidth up to 2 GHz.
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L, m波段波导开槽天线阵列特性的理论与实验研究
波导开槽天线阵列(WSAA)是一类特殊的多波束微波天线,广泛应用于独立发射或接收设备以及复杂天线系统的元件中。WSAA是目前最有前途的机载天线系统之一,在无线电定位、无线电导航和无线电通信设备中得到了广泛的应用。作为多波束机载天线系统,WSAA具有许多无可争辩的优点:(1)无突出部件;(ii)通过形成如此多的主波瓣及其指向性、主波瓣宽度、侧辐射水平等,简单地实现最佳天线辐射特性。介绍了测量系统研究所(NIIIS)规定辐射参数的矩形多波束毫米WSAA的科研、设计和生产过程。考虑到WSAA作为机载天线系统的特殊性,我们研究了圆孔径阵列的情况。近年来,人们设计了宽带和超宽带天线系统。本文还介绍了带宽研究的结果。理论和实验研究表明:(1)优化WSAA整体尺寸的可能途径之一是将其矩形孔径四角化,从而改善WSAA的辐射性能,即降低旁瓣电平;(ii) WSAA可用于辐射接收带宽达2ghz的宽频带信号。
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