Consecutive mean excision algorithms in narrowband or short time interference mitigation

H. Saarnisaari
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引用次数: 36

Abstract

Narrowband interference and impulse cancellation are parallel problems in the frequency domain and in the time domain, respectively. This paper presents iterative consecutive mean excision (CME) algorithms that can be used for these purposes. One CME algorithm uses all the data in the initial step whereas a more powerful forward CME (FCME) algorithm uses only a small part of the data. Iteration is shown to be an advantage if compared to noniterative algorithms, but the benefits depend on signals to be cancelled. The CME algorithms also provide a direct way to set the interference detection threshold. The paper discusses the implementation and interference mitigation capability of the CME algorithms. In the simulations their performance is compared to noniterative similar kind of notch filter algorithms in a delay estimation problem. It is shown that these methods offer remarkable interference tolerance improvements especially against very narrowband interference and about 40 dB improvements in tolerable interference-to-signal ratio for interference whose bandwidth is up to 40 % of the bandwidth of the desired signal. It is also shown that averaging is an important element in interference cancellation in delay estimation if the bandwidth of the interference exceeds 10 % of the bandwidth of the desired signal.
窄带或短时干扰抑制中的连续均值切除算法
窄带干扰和脉冲抵消在频域和时域上分别是并行问题。本文提出了可用于这些目的的迭代连续平均切除(CME)算法。一种CME算法在初始步骤中使用所有数据,而更强大的前向CME (FCME)算法只使用一小部分数据。如果与非迭代算法相比,迭代被证明是一种优势,但这种优势取决于要取消的信号。CME算法还提供了一种设置干扰检测阈值的直接方法。本文讨论了CME算法的实现和抗干扰能力。仿真结果表明,该算法与非迭代同类陷波滤波算法在时延估计问题中的性能进行了比较。结果表明,这些方法提供了显著的干扰容忍度改善,特别是对非常窄带的干扰和可容忍的干扰信号比提高约40 dB,其带宽高达所需信号带宽的40%。在延迟估计中,如果干扰的带宽超过期望信号带宽的10%,则平均是干扰消除的重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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