用于跟踪跳频信号的多通道粒子滤波器

A. Valyrakis, N. Sidiropoulos, A. Swami
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引用次数: 1

摘要

我们考虑了在不知道跳频方向图的情况下跟踪跳频信号的问题。这个问题在军事通信中引起了人们的兴趣,在军事通信中,除了频率之外,跳时也可以随机移动,以防止未经授权的接收和干扰。我们最近提出了一个概念简单的随机状态空间模型(Sidiropoulos等人,2006),该模型捕获了载波频率和跳时的随机性,非常适合于粒子滤波工具的应用。在这一贡献中,我们将(Sidiropoulos等人,2006)中的方法推广到多渠道情况。特别是,我们证明了最小化粒子权重方差的重要性函数可以再次以封闭形式计算。在相关的仿真实验中,对所得到的多通道粒子滤波器进行了评估并与单通道粒子滤波器进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multichannel Particle Filters for Tracking A Frequency Hopped Signal
We consider the problem of tracking a frequency-hopped signal without knowledge of its hopping pattern. The problem is of interest in military communications, where, in addition to frequency, hop timing may also be randomly shifted to guard against unauthorized reception and jamming. We have recently proposed (Sidiropoulos et al., 2006) a conceptually simple stochastic state-space model that captures the randomness in carrier frequency and hop timing, and is well- suited for application of particle filtering tools. In this contribution, we generalize the approach in (Sidiropoulos et al., 2006) to the multichannel case. In particular, we show that the importance function that minimizes the variance of particle weights can again be computed in closed form. The resulting multichannel particle filters are assessed and compared to their single-channel counterparts in pertinent simulation experiments.
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