首页> 外文期刊>Radiophysics and quantum electronics >SOUNDING OF AN ARTIFICIALLY PERTURBED IONOSPHERE BY MEANS OF AN IONOSONDE/POSITION FINDER WITH CHIRP MODULATION OF THE SIGNAL
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SOUNDING OF AN ARTIFICIALLY PERTURBED IONOSPHERE BY MEANS OF AN IONOSONDE/POSITION FINDER WITH CHIRP MODULATION OF THE SIGNAL

机译:带有离子声调调制的离子水/位置探测器对人工扰动的离子球的声音探测

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We describe the operation of an ionosonde/position finder with chirp modulation of the signal.The first results of measuring the characteristics of short-wave radio signals scattered by artificial small-scale inhomogeneities, which were obtained by means of an ionosonde/position finder on the IZMIRAN—"SURA"—Rostov-on-Don path are presented. It was found that under certain ionospheric conditions, the angular and frequency selection of the scattered signals take place,in which case the signals are observed simultaneQusly in several frequency intervals (mainly, in three, namely, 6-9.5 MHz, 10-12 MHz, and 15-18 MHz) with different angles of incidence of radio waves in the vertical plane. In this case, the incidence angles were 20° -35°, 18° -32°, and 10° -20°from the horizon for the first, second, and third frequency interval, respectively. Ionograms of oblique sounding were modeled allowing for the scattering of radio waves by artificial small-scale inhomogeneities. It is shown that at frequencies from 10 to 12 MHz, aspect conditions are fulfilled for the signals ducting along the high-angle beam (Pedersen mode). A t frequencies 15-18 MHz (higher than the maximum observable frequency of the forward signal on the path IZMIRAN Rostov-on-Don), aspect scattering.conditions are fulfilled for the signals incident on a scattering area in the ascending part of the trajectory. A t low frequencies 6-9.5 MHz (below the maximum observed frequency of the forward signal on the IZMIRAN—Rostov-on-Don path), the observable additional signals are caused by the scattering of radio waves by artificial inhomogeneities with subsequent relfection of the scattered signal from the Earth on the "SURA"—Rostov-on-Don path.
机译:我们描述了对信号进行线性调频调制的离子探空仪/位置探测器的操作。测量由人工小规模不均匀性散射的短波无线电信号的特性的第一个结果是通过在离子探空仪/位置探测器上获得的。展示了IZMIRAN-“ SURA”-顿河畔罗斯托夫的路径。发现在一定的电离层条件下,会发生散射信号的角度和频率选择,在这种情况下,可以同时观察到多个频率间隔(主要是三个频率,即6-9.5 MHz,10-12 MHz)中的信号和15-18 MHz),并且在垂直平面上有不同的无线电波入射角。在这种情况下,对于第一,第二和第三频率间隔,与水平线的入射角分别为20°-35°,18°-32°和10°-20°。对倾斜探测的电离图进行建模,以允许通过人工小尺度不均匀性来散射无线电波。结果表明,在10到12 MHz的频率上,满足了沿高角度波束传输的信号的高宽比条件(Pedersen模式)。 t频率为15-18 MHz(高于路径IZMIRAN-Don Rostov上正向信号的最大可观察频率),纵横比散射。满足入射在轨迹上升部分散射区域的信号的条件。 。在6-9.5 MHz的低频范围内(低于IZMIRAN-顿河畔罗斯托夫路径上前向信号的最大观测频率),可观察到的附加信号是由人为不均匀性造成的无线电波散射以及随后对信号的影响而引起的。 “ SURA” —顿河畔罗斯托夫路径上来自地球的散射信号。

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