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An improved PGA algorithm for ionosphere phase perturbation correction

机译:用于电离层相位扰动校正的改进PGA算法

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Ionosphere phase perturbation destroys the coherence of echo signal for sky-wave Over-The-Horizon Radar (OTHR) and broadens the spectrum of signal and clutter, which will exacerbate the property of low-speed object detection. PGA (Phase Gradient Autofocus) is an excellent perturbation correction algorithm with properties of logical, concise, robust etc for various perturbations. In particularlly, it will reduce computation work enormously. However, the estimate accuracy of PGA is degraded when the Bragg peak filter bandwidth is selected improperly, or the zero frequency components are not acquired exactly, then the iteration times should be increased. An improved PGA is proposed for ionosphere phase perturbation correction, which can realize adaptive selection of the first order clutter filter bandwidth. At the same time, a method of zero frequency abstraction based on Bragg frequencies symmetry is presented, which can decrease iteration times with same perturbation function estimate accuracy and higher computation efficiency.
机译:电离层相位扰动破坏了天波超视距雷达(OTHR)的回波信号的相干性,并扩大了信号和杂波的频谱,这将加剧低速目标检测的性能。 PGA(相位梯度自动对焦)是一种出色的扰动校正算法,具有针对各种扰动的逻辑,简洁,鲁棒等特性。特别是,它将极大地减少计算工作。但是,如果布拉格波​​峰滤波器的带宽选择不当,或者零频率分量的获取不准确,那么PGA的估计精度就会降低,因此迭代时间会增加。提出了一种改进的PGA,用于电离层相位扰动校正,可以实现对一阶杂波滤波器带宽的自适应选择。同时,提出了一种基于布拉格频率对称性的零频率抽象方法,该方法可以在相同的扰动函数估计精度和更高的计算效率的情况下减少迭代次数。

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