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Propagation effects on high frequency skywave multiple-input–multiple-output radar

机译:对高频天波多输入多输出雷达的传播影响

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Multiple-input-multiple-output (MIMO) technology has been suggested as an effective tool in overcoming some of the issues that are typically relate to conventional over the horizon radars. Notwithstanding, effects, such as fading and multipath propagations are ever present and cannot be avoided even when using a MIMO configuration. For this reason, a study on the impact of such effects on high frequency (HF) skywave MIMO radars is fundamental for an effective design of such systems. This study aims to study the effects of ionospheric propagation on the performance of the HF MIMO skywave radar. In particular, the relationship between the transmitted signal parameters and the ionospheric variations because of perturbations is highlighted in a suitable signal model. The performance analysis is performed in terms of estimated direction of arrival and loss of virtual array elements.
机译:已经提出了多输入多输出(MIMO)技术作为一种有效的工具,可以克服通常与传统的水平雷达有关的一些问题。尽管如此,诸如衰落和多径传播之类的效果一直存在并且即使在使用MIMO配置时也无法避免。因此,对此类影响对高频(HF)天波MIMO雷达的影响进行研究是有效设计此类系统的基础。这项研究旨在研究电离层传播对HF MIMO天波雷达性能的影响。特别地,在合适的信号模型中突出显示了由于扰动而导致的发射信号参数与电离层变化之间的关系。根据估计的到达方向和虚拟阵列元素的丢失进行性能分析。

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