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Novel specular meteor radar systems using coherent MIMO techniques to study the mesosphere and lower thermosphere

机译:使用相干MIMO技术的新型镜面流星雷达系统研究中层和低层热层

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Typical specular meteor radars (SMRs) use one transmitting antenna and at least a five-antenna interferometric configuration on reception to study the mesosphere and lower thermosphere (MLT) region. The interferometric configuration allows the measurement of the angle-of-arrival (AOA) of the detected meteor echoes, which in turn is needed to derive atmospheric parameters (e.g., mean winds, momentum fluxes, temperatures, and neutral densities). Recently, we have shown that coherent MIMO configurations in atmospheric radars, i.e., multiple input (transmitters) and multiple output (receivers), with proper diversity in transmission can be used to enhance interferometric atmospheric and ionospheric observations. In this study we present novel SMR systems using multiple transmitters in interferometric configuration, each of them employing orthogonal pseudorandom coded transmitted sequences. After proper decoding, the angle of departure (AOD) of the detected meteor echoes with respect to the transmitter site are obtained at each receiving antenna. We present successful bistatic implementations of (1)?five transmitters and one receiver using coded continuous wave (CW) (MISO-CW), and (2)?five transmitters and five receivers using coded CW (MIMO-CW). The latter system allows simultaneous independent observations of the specular meteor trails with respect to the transmitter (AOD) and with respect to the receiver (AOA). The quality of the obtained results is evaluated in terms of the resulting mean winds, the number of detections and the daily diffusion trail vs. altitude behavior. We show that the proposed configurations are good alternatives to explore the MLT region. When combined with multi-static approaches, they can increase the number of meteor detections, thereby improving the quality of atmospheric estimates and allowing the measurement of new atmospheric parameters (e.g., horizontal divergence, vorticity), The use of multiple collocated transmitters for interferometric AOD determination makes building a multi-static radar network easier logistically, as only one receiver per receiving site antenna is sufficient.
机译:典型的镜面流星雷达(SMR)在接收时使用一个发射天线和至少五个天线的干涉测量配置来研究中层和较低热层(MLT)区域。干涉仪配置允许测量检测到的流星回波的到达角(AOA),这反过来又需要导出大气参数(例如,平均风,动量通量,温度和中性密度)。最近,我们已经表明,大气雷达中的相干MIMO配置,即具有适当分集传输的多个输入(发射机)和多个输出(接收机),可以用于增强干涉式大气和电离层观测。在这项研究中,我们提出了新颖的SMR系统,该系统在干涉测量配置下使用多个发射机,每个发射机都采用正交伪随机编码的发射序列。在正确解码之后,在每个接收天线处获得检测到的流星回波相对于发射器站点的偏离角(AOD)。我们介绍了(1)五个发射机和一个使用编码连续波(CW)(MISO-CW)的接收机,以及(2)五个发射机和五个接收器使用编码CW(MIMO-CW)的成功的双基地实现。后一个系统允许同时独立地观察相对于发射器(AOD)和相对于接收器(AOA)的镜面流星轨迹。根据所得的平均风,探测次数以及每日扩散迹线与海拔高度行为,评估所得结果的质量。我们表明,提出的配置是探索MLT地区的好选择。当与多静态方法结合使用时,它们可以增加流星探测的次数,从而改善大气估算的质量,并允许测量新的大气参数(例如,水平散度,涡度)。使用多个并置的发射机进行干涉式AOD由于每个接收站点天线仅一个接收器就足够了,因此确定工作使后勤建立一个多静态雷达网络变得更加容易。

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