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A cross-validation based semi-analytical performance evaluation for high order modulations

机译:基于交叉验证的高阶调制半分析性能评估

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Higher order quadrature amplitude modulation (HOQAM) is one of the key technologies used in advanced mobile communication systems to achieve high data rates. However, in such systems, performance evaluation can be very complicated and time consuming due to the increase of constellation size. As a solution, a QAM scheme is seen as a combination of two pulse amplitude modulations (PAM). Nevertheless, the system remains complex especially with very high constellation sizes. Therefore, Monte-Carlo simulation method is impractical to obtain the expected system performance. In this paper, we propose a semi-analytical performance evaluation methodology for a PAM modulation. Our approach is based on the probability density estimation using kernel technique in joint application with cross-validation (CV) criterion. We derive both semi-analytical symbol error probability (SEP) and semi-analytical bit error probability (BEP) for several modulation schemes. Simulation results show that, in terms of SEP and BEP metrics, our technique is accurate compared with theoretical error probabilities.
机译:高阶正交幅度调制(HOQAM)是高级移动通信系统中用于实现高数据速率的关键技术之一。然而,在这种系统中,由于星座图尺寸的增加,性能评估可能非常复杂且耗时。作为解决方案,QAM方案被视为两个脉冲幅度调制(PAM)的组合。然而,该系统仍然很复杂,尤其是在非常大的星座尺寸的情况下。因此,蒙特卡罗仿真方法对于获得预期的系统性能是不切实际的。在本文中,我们提出了一种用于PAM调制的半分析性能评估方法。我们的方法基于使用交叉验证(CV)标准的联合应用中使用核技术的概率密度估计。我们导出了几种调制方案的半解析符号错误概率(SEP)和半解析误码率(BEP)。仿真结果表明,就SEP和BEP指标而言,与理论错误概率相比,我们的技术是准确的。

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