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Wuhan Ionospheric Oblique-Incidence Sounding System and Its New Application in Localization of Ionospheric Irregularities

机译:武汉电离层斜入射测深系统及其在电离层不规则性定位中的新应用

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摘要

In this paper, a novel oblique-incidence ionosonde (Wuhan Ionospheric Oblique-Incidence Sounding System) and its new application in the localization of the ionospheric irregularities are presented. Due to the usage of the binary-phase-coded waveform, a large signal processing gain, a high Doppler and range resolution, and a large unambiguous detection range can be achieved in this ionosonde. This ionosonde also adopts the peripheral component interconnect extensions for instruments (PXI) bus technology and is designed as a small-sized PXI-based system. Furthermore, a high-performance oven-controlled crystal oscillator that is disciplined by the Global Positioning System is used to achieve a good time and frequency synchronization. With multichannel digital receiver and multiple receiving sites, this ionosonde can be applied in the localization of the ionospheric irregularities. The details of the system configuration, the ambiguity function of the sounding waveforms, the signal processing algorithm, and the time and frequency synchronization method are described. The experimental results show that the virtual height along with the ground position of the ionospheric field-aligned irregularities can be preliminarily localized with this ionosonde.
机译:本文提出了一种新型的斜入射离子探空仪(武汉电离层斜入射测深系统)及其在电离层不规则性定位中的新应用。由于使用了二进制相位编码波形,因此在该离子探空仪中可以实现较大的信号处理增益,较高的多普勒和范围分辨率以及较大的明确检测范围。该离子探空仪还采用了仪器的外围组件互连扩展(PXI)总线技术,并被设计为基于PXI的小型系统。此外,通过全球定位系统控制的高性能烤箱控制晶体振荡器可实现良好的时间和频率同步。借助多通道数字接收器和多个接收站点,该离子探空仪可用于电离层不规则性的定位。详细介绍了系统配置,探测波形的模糊函数,信号处理算法以及时间和频率同步方法。实验结果表明,利用该离子探空仪可以初步确定虚拟高度和电离层场对准不规则形的地面位置。

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