采用改进的重要采样方法对具有码间干扰和非高斯噪声的数字通信系统进行误码率仿真

D. Lu, J. Baprawski, K. Yao
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引用次数: 3

摘要

针对具有码间干扰和非高斯噪声的数字通信系统误码率性能的仿真问题,提出了一种高效、鲁棒的仿真方法。给出了传统重要性抽样(CIS)和改进重要性抽样(IIS)技术的误码率仿真结果。在每种情况下,应用边界技术来确保模拟的误码率估计具有指定的估计方差。推导了直接蒙特卡罗方法的仿真改进比,并表明IIS技术对任何大小的系统内存长度都有恒定的改进。CIS技术被证明具有有害的维度效应,因此其有效性随着系统内存长度的增加而降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BER simulation of digital communication systems with intersymbol interference and non-Gaussian noise using improved importance sampling
The authors present an efficient and robust solution to the problem of simulating the bit error rate (BER) performance of digital communication systems with intersymbol interference and nonGaussian noise. BER simulation results are shown for the conventional importance sampling (CIS) and improved importance sampling (IIS) techniques. In each case a bounding technique was applied to ensure that the BER estimates simulated were obtained with a specified estimate variance. The simulation improvement ratio over a direct Monte Carlo approach was derived and showed that the IIS technique gives a constant improvement for any size of system memory length. The CIS technique was shown to have a detrimental dimensionality effect, such that its effectiveness decreases as the system memory length increases.<>
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