A frequency-domain detection and estimation scheme for single-tone interference suppression

Hung-Chin Wang
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Abstract

For wideband communication systems, the ability against relatively narrowband interference, which is commonly modeled as single-tone interference, is of great importance. Without proper mitigation, i.e., interference suppression, the system performance can degrade significantly as the interference power increases. To cope with this problem, this paper develops an efficient frequency-domain single-tone interference detection and estimation scheme for interference suppression. After transforming the received signal to frequency domain via fast Fourier transform, and with possible power accumulation of consecutive fast Fourier transform windows for successful detection of relatively weak interference (e.g., at a signal-to-interference ratio around 24dB), we derive the probability density function of the received power within each tone and develop a threshold-based detection scheme, where the theoretical probabilities of false alarm and missed detection given a chosen threshold are also derived and confirmed by simulations. Based on the theoretical analyses, we further propose a high-accuracy and low-complexity scheme that estimates the frequency of single-tone interference.
一种单音干扰抑制的频域检测与估计方案
对于宽带通信系统来说,抗相对窄带干扰的能力是非常重要的,而相对窄带干扰通常被建模为单音干扰。如果没有适当的缓解,即干扰抑制,系统性能会随着干扰功率的增加而显著下降。针对这一问题,本文提出了一种有效的频域单音干扰检测与估计方案。在通过快速傅立叶变换将接收信号转换到频域后,通过连续快速傅立叶变换窗口的可能功率积累来成功检测相对较弱的干扰(例如,在信噪比约为24dB时),我们推导出每个音调内接收功率的概率密度函数,并开发了基于阈值的检测方案。其中,在给定阈值的情况下,也推导出了虚警和漏检的理论概率,并通过仿真进行了验证。在理论分析的基础上,提出了一种高精度、低复杂度的单音干扰频率估计方案。
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