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Reference antenna techniques for canceling radio frequency interference due to moving sources

机译:消除由于移动源引起的射频干扰的参考天线技术

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摘要

We investigate characteristics of radio frequency interference (RFI) signals that can affect the excision potential of some interference mitigation algorithms. The techniques considered are those that modify signals from auxiliary reference antennas to model and cancel interference from an astronomical observation. These techniques can be applied in the time domain, where the RFI voltage is modeled and subtracted from the astronomy signal path (adaptive noise canceling), or they can be applied to the autocorrelated and cross-correlated voltage spectra in the frequency domain (postcorrelation canceling). For ideal receivers and a single, statistically stationary interfering signal, both precorrelation and postcorrelation filters can result in complete cancellation of the interference from the observation. The postcorrelation method has the advantage of being applied on tens or hundreds of millisecond timescales rather than tens or hundreds of nanosecond timescales. However, this can be a disadvantage if the RFI transmitter location is changing, since the cross-correlated power measurements which link the interference power in the astronomy and reference signal paths can decorrelate. If the decorrelation is not too severe, it can be allowed for, at the expense of a noise increase. The time domain adaptive cancelers are allowed to slightly vary their internal coefficients and adapt to changing phases during the integrations, which means that they avoid the decorrelation problem. However, the freedom to adapt also results in a noise increase. In this paper the ability of both types of cancelers to excise interference originating from a moving source is compared. The cancelers perform well on both observed and simulated data, giving complete cancellation.
机译:我们研究了射频干扰(RFI)信号的特征,该信号可能会影响某些干扰缓解算法的切除潜能。所考虑的技术是修改来自辅助参考天线的信号以建模并消除来自天文观测的干扰的技术。这些技术可以应用于时域,在该时域中对RFI电压进行建模并从天文学信号路径中减去(自适应噪声消除),也可以将其应用于频域中的自相关和互相关电压谱(后相关消除)。 )。对于理想的接收器和单一的,统计上稳定的干扰信号,预相关和后相关滤波器都可以完全消除观测中的干扰。后相关方法的优点是可以应用在数十或数百毫秒的时标上,而不是数十或数百纳秒的时标上。但是,如果RFI发射器的位置发生变化,这可能是不利的,因为链接天文学和参考信号路径中的干扰功率的互相关功率测量可以去相关。如果去相关不是太严格,则可以允许它,但以增加噪声为代价。允许时域自适应抵消器在积分过程中略微改变其内部系数并适应变化的相位,这意味着它们避免了去相关问题。然而,适应的自由也导致噪声增加。在本文中,比较了两种类型的抵消器消除源于移动源的干扰的能力。抵消器在观察到的数据和模拟数据上均表现出色,可以完全抵消。

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  • 来源
    《Radio Science》 |2005年第5期|1-9|共9页
  • 作者单位

    School of Physics, University of Sydney, Sydney, New South Wales, Australia, Also at Australia Telescope National Facility, Commonwealth Scientific and Industrial Research Organisation, Epping, New South Wales, Australia.;

    School of Physics, University of Sydney, Sydney, New South Wales, Australia, Also at Australia Telescope National Facility, Commonwealth Scientific and Industrial Research Organisation, Epping, New South Wales, Australia.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Delays; Antenna measurements; Decorrelation; Correlation; Power measurement; Voltage measurement; Interference;

    机译:延迟;天线测量;去相关;相关;功率测量;电压测量;干扰;

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