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The frequency-agile radar: A multifunctional approach to remote sensing of the ionosphere

机译:频率捷变雷达:一种用于电离层遥感的多功能方法

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We introduce a new kind of diagnostic sensor that combines multifunctional measurement capabilities for ionospheric research. Multifunctionality is realized through agility in frequency selection over an extended band (1.5 to 50 MHz), system modularity, complete system control by software written in C, and a user-friendly computer interface. This sensor, which we call the frequency-agile radar (FAR), incorporates dual radar channels and an arbitrary waveform synthesizer that allows creative design of sophisticated waveforms as a means of increasing its sensitivity to weak signals while minimizing loss in radar resolution. The sensitivity of the FAR is determined by two sets of power amplifier modules: four 4-kW solid-state broadband amplifiers, and four 30-kW vacuum tube amplifiers. FAR control is by an AT-bus personal computer with on-line processing by a programmable array processor. The FAR does not simply house the separate functions of most radio sensors in use today, it provides convenient and flexible access to those functions as elements to be used in any combination. Some of the first new results obtained with the FAR during recent field campaigns are presented to illustrate its versatility. These include (1) the first detection of anomalous high-frequency (HF) reflections from a barium ion cloud, (2) the first evidence of unexpectedly large drifts and a shear north of the equatorial electrojet, (3) the first HF radar signature of a developing equatorial plasma bubble, and (4) the first measurements by a portable radar of altitude-extended, quasi-periodic back-scatter from midlatitude sporadic E. We also mention the potential of the FAR for atmospheric remote sensing.
机译:我们推出了一种新型诊断传感器,该传感器结合了用于电离层研究的多功能测量功能。通过在扩展频带(1.5至50 MHz)上进行频率选择的敏捷性,系统模块化,通过用C编写的软件进行的完整系统控制以及用户友好的计算机界面,可以实现多功能性。这种传感器,我们称为频率捷变雷达(FAR),结合了双雷达通道和任意波形合成器,可以对复杂波形进行创造性设计,以提高其对微弱信号的灵敏度,同时将雷达分辨率的损失降至最低。 FAR的灵敏度由两组功率放大器模块确定:四个4 kW固态宽带放大器和四个30 k​​W真空管放大器。 FAR控制是通过AT总线个人计算机进行的,并通过可编程阵列处理器进行在线处理。 FAR不能简单地容纳当今使用的大多数无线电传感器的单独功能,它还可以方便灵活地访问这些功能,并以任何组合方式使用。展示了FAR在最近的野战中获得的一些最初的新结果,以说明FAR的多功能性。这些措施包括(1)首次检测到钡离子云产生的异常高频(HF)反射;(2)出乎意料的大漂移和赤道电喷向北剪切的第一个证据;(3)HF雷达的第一个特征(4)便携式雷达对中纬度零星E的高度扩展的准周期反向散射的首次测量。我们还提到了FAR在大气遥感中的潜力。

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