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Radio frequency interference mitigation with phase-only adaptive beam forming

机译:仅具有相位自适应波束形成的射频干扰缓解

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Connected radio interferometers are sometimes used in the tied array mode: signals from antenna elements are coherently added and the sum signal applied to a very long baseline interferometry (VLBI) back-end or pulsar-processing machine. Usually, there is no computer-controlled amplitude weighting in the existing radio interferometer facilities. Radio frequency interference (RFI) mitigation with phase-only adaptive beam forming is proposed for this mode of observation. Small phase perturbations are introduced in each of the antenna's signals. The values of these perturbations are optimized in such a way that the signal from a radio source of interest is preserved and RFI signals are suppressed. An evolutionary programming algorithm is used for this task. Computer simulations, made for both one-dimensional and two-dimensional array setups, show considerable suppression of RFI and acceptable changes to the main array beam in the radio source direction.
机译:连接的无线电干涉仪有时以束缚阵列模式使用:来自天线元件的信号被相干地相加,并且总和信号被施加到非常长的基线干涉仪(VLBI)后端或脉冲星处理机上。通常,在现有的无线电干涉仪设备中没有计算机控制的幅度加权。针对这种观察模式,提出了仅具有相位自适应波束形成的射频干扰(RFI)缓解措施。在每个天线信号中都会引入小的相位扰动。以这样的方式优化这些扰动的值:保留来自感兴趣无线电源的信号,并抑制RFI信号。进化编程算法用于此任务。针对一维和二维阵列设置进行的计算机仿真显示,射频干扰得到了相当大的抑制,并且在无线电源方向上对主阵列波束的变化可接受。

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