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首页> 外文期刊>Proceedings of the IEE - Part III: Radio and Communication Engineering >A phase-comparison method of measuring the direction of arrival of ionospheric radio waves
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A phase-comparison method of measuring the direction of arrival of ionospheric radio waves

机译:测量电离层无线电波到达方向的相位比较方法

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The most convenient research method of measuring completely the direction of arrival of waves reflected at the ionosphere appears to be that in which the phase differences of the signals received in an assembly of aerials are measured. If two pairs of similar aerials erected on lines perpendicular to each other are used, two independent phase angles may be obtained from which both angle of elevation and azimuth may be deduced. The apparatus described uses spaced coaxial loop aerials at a separation of 100 m. The signals from the aerials in a pair are amplified by means of matched receivers. The phase difference between the output signals from these receivers is displayed direct on a cathode-ray tube as the angle of inclination of the trace. With pulsed signals emitted from a suitable transmitter and with corresponding timing equipment in the receiver, the individual rays making up the total ionospheric signal may be separated from each other. The apparatus covers the frequency band 4????????15 Mc/s, and the r.m.s. error of phase measurement is about 1???????°. Site errors, however, set a more severe limit to the accuracy of the directional measurements than do instrumental errors, and in practice it is found that, for example, over an oblique path corresponding to a range of 700 km, bearings can be measured with an accuracy of about 1???????° while the angle of elevation can be measured with an accuracy better than about 1???????????????° so long as it exceeds 30???????°. These limitations mean that angles of elevation of E-layer reflections cannot be measured accurately at long range; it is possible, however, to obtain measurements of useful accuracy of the angle of elevation of F-layer reflections at ranges up to 1000 km or more. Bearings can be measured accurately at all ranges and for all reflections. The apparatus has so far been used principally for the study of F-layer reflections.
机译:完全测量电离层反射波的到达方向的最便捷的研究方法似乎是测量在天线组件中接收到的信号的相位差。如果使用在彼此垂直的线上竖立的两对相似的天线,则可以获得两个独立的相角,从中可以推导出仰角和方位角。所描述的设备使用间隔为100 m的同轴同轴环形天线。一对天线中的信号通过匹配的接收器进行放大。这些接收器的输出信号之间的相位差直接显示在阴极射线管上,作为迹线的倾斜角度。利用合适的发射机发出的脉冲信号以及接收机中的相应定时设备,组成总电离层信号的各个射线可以彼此分开。该设备覆盖频带4×15 Mc / s,和r.m.s。相位测量的误差约为1°。但是,现场误差比定向误差对方向测量的精度设置了更为严格的限制,并且在实践中发现,例如,在对应于700 km范围的倾斜路径上,可以用精确度约为1°C,而仰角只要超过30°,其精确度就可以大于1°C。 ???????°。这些限制意味着E层反射的仰角无法在远距离精确测量。但是,有可能在高达1000 km或更大的范围内获得F层反射仰角的有用精度的测量值。可以在所有范围和所有反射情况下精确测量轴承。迄今为止,该装置主要用于研究F层反射。

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