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Bit error rate estimation using probability density function estimators

机译:使用概率密度函数估计器的误码率估计

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摘要

The concept of real-time bit error rate (BER) estimation based on probability density function (PDF) estimators of the decision statistic is discussed. Communications systems need techniques to approximate real-time BER estimation without resorting to brute-force error counting methods. Due to the dynamic nature of the wireless channel, a priori (deductive) estimation techniques (e.g., where knowledge of signal impairments is assumed before demodulation) are often unreliable. A posteriori (inductive) estimation techniques (e.g., where knowledge of signal impairments is acquired after the signal is demodulated) are preferable because they assume no prior knowledge of the channel. Two a posteriori techniques are described that yield reliable BER estimates over small observation intervals: (1) the Gram-Charlier series approximation for PDFs and (2) Parzen's PDF estimator. Robust estimators of location and scale are also employed to improve the performance of Gram-Charlier estimation. The performance of BER estimation based on the PDF estimators is validated by simulations. A 1-bit differential demodulator (DD1) is used to demodulate a Gaussian minimum shift keying signal, and Gram-Charlier-based and Parzen (1962) based BER estimations are compared to measured DD1 results. Comparisons are made for BER estimation versus measured BER in additive white Gaussian noise (AWGN) and cochannel interference (CCI) channels and in urban multipath with AWGN and CCI.
机译:讨论了基于决策统计的概率密度函数(PDF)估计器的实时误码率(BER)估计的概念。通信系统需要在不求助于蛮力错误计数方法的情况下近似实时BER估计的技术。由于无线信道的动态性质,先验(演绎)估计技术(例如,在解调之前假设信号减损的知识)常常是不可靠的。后验(归纳)估计技术(例如,其中在信号被解调之后获得信号损伤的知识)是优选的,因为它们不假定信道的先验知识。描述了两种后验技术,它们可以在较小的观察间隔内产生可靠的BER估计:(1)PDF的Gram-Charlier级数逼近和(2)Parzen的PDF估计器。位置和比例尺的鲁棒估计器也可用于改善Gram-Charlier估计的性能。通过PDF验证了基于PDF估计器的BER估计性能。 1位差分解调器(DD1)用于解调高斯最小频移键控信号,并将基于Gram-Charlier和Parzen(1962)的BER估计与测得的DD1结果进行比较。在加性高斯白噪声(AWGN)和同信道干扰(CCI)信道中以及在具有AWGN和CCI的城市多路径中,将BER估计与测得的BER进行了比较。

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