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首页> 外文期刊>Journal of Electrical and Electronic Engineering >Robust Detection Method of Arrival Time Difference Under Minimum Maximum Entropy Criterion
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Robust Detection Method of Arrival Time Difference Under Minimum Maximum Entropy Criterion

机译:最小最大熵准则下到达时间差的鲁棒检测方法

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Accurate measurement of arrival time difference is one of the key technologies in many areas, such as the global positioning system. Due to the effects of environmental noises around receiver, the classic methods under least mean-square error rule are the lack of robustness. In this paper, a robust method of the time difference detection is addressed based on the minimum maximum entropy, referred to MMEATD. The maximum entropy function used in this method is a smooth approximation of the L1 norm. It has robustness to large outliers, but also is differentiable. Under the minimum maximum entropy criterion, the adaptive filter weight vector will be convergence, and its peak position indicates the arrival time difference. The computer simulation experiments show the estimation performance of this algorithm under different signal and noise ratio or different impulsive noise intension. Meanwhile, its estimation performance is compared with minimum mean square error algorithm. Results show that the proposed method has a good robustness under the impulsive noise environment.
机译:精确测量到达时间差是许多领域的关键技术之一,例如全球定位系统。由于接收器周围环境噪声的影响,在最小均方误差规则下的经典方法是缺乏鲁棒性。本文提出了一种基于最小最大熵的鲁棒的时差检测方法,称为MMEATD。此方法中使用的最大熵函数是L1范数的平滑近似。它对较大的离群值具有鲁棒性,但也可以区分。在最小最大熵准则下,自适应滤波器权重向量将收敛,并且其峰值位置指示到达时间差。计算机仿真实验表明,该算法在不同信噪比或不同脉冲噪声强度下的估计性能。同时,将其估计性能与最小均方误差算法进行了比较。结果表明,该方法在脉冲噪声环境下具有良好的鲁棒性。

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