论文标题
模拟针对现实RFI信号的光谱峰度缓解
Simulating Spectral Kurtosis Mitigation Against Realistic RFI Signals
论文作者
论文摘要
我们研究了统计射频干扰(RFI)缓解技术光谱峰度(SK)的有效性,面对模拟现实的RFI信号。 SK估计单个通道中M功率值集合的峰度,并提供了一个检测度量,该指标能够辨别人制RFI和不一致的感兴趣的天文信号。我们测试SK使用各种代表性调制类型,数据速率,占空比和载体频率标记信号的能力。我们以各种积累长度为M标记并实现多尺度SK,该SK结合了相邻时频箱的信息,以减轻单尺度\ SK中的弱点。我们发现,高数据速率具有明显旁观的信号很难标记,并且有效的占空比和信噪比弱的信号。具有至少一个额外通道的多尺度SK可以检测中心通道和侧带干扰,只要bin通道宽度频率较大,就会标记超过90%。
We investigate the effectiveness of the statistical radio frequency interference (RFI) mitigation technique spectral kurtosis (SK) in the face of simulated realistic RFI signals. SK estimates the kurtosis of a collection of M power values in a single channel and provides a detection metric that is able to discern between human-made RFI and incoherent astronomical signals of interest. We test the ability of SK to flag signals with various representative modulation types, data rates, duty cycles, and carrier frequencies. We flag with various accumulation lengths M and implement multi-scale SK, which combines information from adjacent time-frequency bins to mitigate weaknesses in single-scale \SK. We find that signals with significant sidelobe emission from high data rates are harder to flag, as well as signals with a 50% effective duty cycle and weak signal-to-noise ratios. Multi-scale SK with at least one extra channel can detect both the center channel and side-band interference, flagging greater than 90% as long as the bin channel width is wider in frequency than the RFI.