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Zone plate reflector antennas for applications in space

机译:区域板反射器天线适用于太空中的应用

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The zone plate (ZP) reflector antenna is presented as a low cost, low weight alternative to parabolic reflector and array antennas on satellites and interplanetary spacecraft when antennas with high gain and low sidelobes are required. The reflector efficiency of a zone plate antenna with four phase segments in each Bone is 95 percent. The directional patterns of zone plate antennas were computed by recursive integration of the circular aperture Fresnel integral. Computed antenna patterns are similar to the pattern of a uniformly illuminated parabolic reflector. The ZP reflector has 4 to 5 percent larger beamwidth than the same diameter parabolic reflector, and the first sidelobe level approaches /spl minus/17.7 dB as the number of zones increases. Peak sidelobe levels decrease monotonically. The beamwidth increases and peak sidelobe levels decrease as edge illumination decreases. Chromatic aberration limits the instantaneous bandwidth of a zone plate antenna, but the antenna can be tuned over broad frequency bands by moving the feed position. Aberration limited scan angles are larger than obtainable with parabolic reflectors but, for a given scan angle, the maximum frequency for aberration free beam forming reduces with plate diameter and increases with the F-number. Achievement of large scan angles at K-band and higher frequencies requires corrective optics. Zone plate antennas can be used in a variety of applications where low cost, low weight, multiple beam or scanning of a narrow beam over a large angular field are required.
机译:当需要具有高增益和低侧瓣的天线时,区域板(ZP)反射器天线以低成本,低重量替代到抛物面反射器和阵列天线上的抛物型反射器和阵列天线。每个骨骼中具有四个相段的区域板天线的反射器效率为95%。通过循环孔菲涅耳积分的递归整合来计算区域板天线的方向图案。计算的天线图案类似于均匀照明抛物线反射器的图案。随着区域的数量增加,ZP反射器具有比相同直径的抛物线宽度比相同直径的抛物线宽度更大的波束宽度,并且第一侧链水平接近/散倍/ 17.7dB。峰侧孔水平单调地减少。由于边缘照明减小,波束宽度增加和峰值侧链水平降低。色差限制区域板天线的瞬时带宽,但是通过移动进给位置可以通过宽频带调谐天线。像差有限的扫描角度大于抛物线反射器可获得的扫描角,但是对于给定的扫描角度,对于给定的扫描角度,可自由波束形成的最大频率与板直径减小并随F数增加。在K波段和较高频率下实现大的扫描角度需要纠正光学器件。区域板天线可用于各种应用,其中需要低成本,低重量,多光束或在大角场上的窄光束的扫描。

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