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VHF parabolic cylinder antenna for incoherent scatter radar research

机译:VHF抛物柱面天线用于非相干散射雷达研究

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摘要

A parabolic cylinder reflector antenna has been designed for high-power radar observations of signals scattered from the ionospheric plasma at a frequency of 224 MHz. The antenna is constructed with an offset feed system to reduce aperture blockage. Efficient illumination for circular polarization using crossed dipoles is achieved by means of primary beam forming, which amounts to the construction of a polarization sensitive corner reflector. The measured aperture efficiency is 64%, and the gain 43.6 dB. The antenna can be mechanically steered through 90° in the meridian plane, and the beam can be offset from this plane by ±21.3° by manual phase steering of the 128-element line feed. The width of the aperture is 40 m, and the length 120 m. The reflector is constructed in four 30-m-long sections which can be individually steered. The RF distribution system is such that the two antenna halves can be operated and pointed completely independently. The paper describes the design considerations, the construction, and the testing of the performance of the completed antenna.
机译:设计了抛物柱面反射器天线,用于大功率雷达观测电离层等离子体以224 MHz频率散射的信号。天线采用偏置馈电系统构造,以减少孔径阻塞。利用交叉偶极子的圆偏振的有效照明是通过初级光束形成实现的,这相当于偏振敏感角反射器的构造。测得的孔径效率为64%,增益为43.6 dB。可以在子午平面中将天线机械转向90°,通过对128元素换行进行手动相位控制,可以使波束偏离该平面±21.3°。孔的宽度为40 m,长度为120 m。反射器由四个30米长的部分构成,可以分别操纵。 RF分配系统使得两个天线半部可以完全独立地操作和指向。本文介绍了完成天线的设计注意事项,构造和性能测试。

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