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An Ergodic Approach for Chaotic Signal Estimation at Low SNR With Application to Ultra-Wide-Band Communication

机译:一种低信噪比的遍历方法估计及其在超宽带通信中的应用

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摘要

This paper proposes a novel method to estimate the parameters of chaotic signals corrupted by noise. By exploiting the ergodic property of chaotic signals, it is shown here that signal parameters can be estimated accurately from the noisy chaotic signal. The proposed estimator is proved to be consistent. The asymptotic variance of the proposed method and the Cramer-Rao lower bound (CRLB) are derived analytically to assess the estimation performance. Computer simulations confirm that the proposed ergodic estimation approach provides good parameter estimates even at low signal-to-noise ratio (SNR), and its performance is superior to conventional estimation techniques. This method is then applied to ultra-wide-band (UWB) communication by proposing a novel ergodic chaotic parameter modulation based UWB (ECPM-UWB) scheme. The ECPM-UWB scheme is analog and noncoherent. The communication performance of ECPM-UWB is found to be superior through theoretical mean-square-error (MSE) analysis and computer simulations. The ECPM-UWB scheme is shown to have good spectral characteristics. In addition, the proposed scheme is shown to be robust against channel estimation error and multipath fading using both theoretical and numerical analyses.
机译:本文提出了一种新的方法来估计被噪声破坏的混沌信号的参数。通过利用混沌信号的遍历特性,此处表明可以从嘈杂的混沌信号中准确估计信号参数。所提出的估计量被证明是一致的。通过分析得出所提出方法的渐近方差和Cramer-Rao下界(CRLB),以评估估计性能。计算机仿真证实,所提出的遍历估计方法即使在低信噪比(SNR)时也可以提供良好的参数估计,并且其性能优于常规估计技术。然后,通过提出一种基于遍历混沌参数调制的新型超宽带(ECPM-UWB)方案,将该方法应用于超宽带(UWB)通信。 ECPM-UWB方案是模拟和非相干的。通过理论均方误差(MSE)分析和计算机仿真,发现ECPM-UWB的通信性能优越。 ECPM-UWB方案显示具有良好的光谱特性。此外,使用理论和数值分析均表明,所提出的方案对信道估计误差和多径衰落具有鲁棒性。

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