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Prospective IS-MST radar. Potential and diagnostic capabilities

机译:预期的IS-MST雷达。潜力和诊断能力

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In the next few years, a new radar is planned to be built near Irkutsk. It should have capabilities of incoherent scatter (IS) radars and mesosphere-stratosphere-troposphere (MST) radars [Zherebtsov et al., 2011]. The IS-MST radar is a phased array of two separated antenna panels with a multichannel digital receiving system, which allows detailed space-time processing of backscattered signal. This paper describes characteristics, configuration, and capabilities of the antenna and transceiver systems of this radar. We estimate its potential in basic operating modes to study the ionosphere by the IS method at heights above 100 km and the atmosphere with the use of signals scattered from refractive index fluctuations, caused by turbulent mixing at heights below 100 km. The modeling shows that the radar will allow us to regularly measure neutral atmosphere parameters at heights up to 26 km as well as to observe mesosphere summer echoes at heights near 85 km in the presence of charged ice particles (an increase in Schmidt number) and mesosphere winter echoes at heights near 65 km with increasing background electron density. Evaluation of radar resources at the IS mode in two height ranges 100–600 and 600–2000 km demonstrates that in the daytime and with the accumulation time of 10 min, the upper boundaries of electron density and ionospheric plasma temperature are ~1500 and ~1300 km respectively, with the standard deviation of no more than 10 %. The upper boundary of plasma drift velocity is ~1100 km with the standard deviation of 45 m/s. The estimation of interferometric capabilities of the MST radar shows that it has a high sensitivity to objects of angular size near 7.5 arc min, and its potential accuracy in determining target angles can reach 40 arc sec.
机译:在接下来的几年中,计划在伊尔库茨克附近建造新的雷达。它应该具有非相干散射(IS)雷达和中层-平流层-对流层(MST)雷达的功能[Zherebtsov等,2011]。 IS-MST雷达是两个相分离的天线面板的相控阵,具有一个多通道数字接收系统,可以对反向散射信号进行详细的时空处理。本文介绍了此雷达的天线和收发器系统的特性,配置和功能。我们估计了在基本工作模式下通过IS方法研究电离层在100 km以上高度和在大气中的潜力,并使用了由折射率波动引起的信号散射所产生的信号,该折射率波动是由100 km以下高度的湍流混合引起的。该模型表明,该雷达将使我们能够定期测量高达26 km高度的中性大气参数,并在存在带电冰粒(施密特数增加)和中层的情况下,观测高度在85 km附近的中层夏季回波。随着背景电子密度的增加,冬季在65 km附近的高度回波。在两个高度范围100–600和600–2000 km的IS模式下对雷达资源的评估表明,在白天以及累积时间为10分钟的情况下,电子密度和电离层等离子体温度的上限为〜1500和〜1300 km的标准偏差不超过10%。等离子体漂移速度的上限为〜1100 km,标准偏差为45 m / s。 MST雷达的干涉测量能力估计表明,它对接近7.5 arc min的角度大小的物体具有很高的灵敏度,其确定目标角度的潜在精度可以达到40 arc sec。

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