Multistage detection for OFDM signals under phase noise

Q. Quan
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Abstract

In orthogonal frequency-division multiplexing (OFDM) transmission system, phase noise from oscillator instabilities in the receiver is a potentially serious problem, especially when bandwidth efficient, high order signal constellations are employed. There are two carrier phase noise effects in the OFDM receiver. One is the common phase error (CPE) which is caused by the own carrier phase noise, another is the inter carrier interference (ICI) which is caused by the phase noise of all other carriers. The orthogonality of the sub-carriers has been broken due to the ICL So the conventional detection implemented by an FFT and a decision is not the good choice. The optimum detection is based on maximum likelihood sequence estimation. But the computational complexity of the optimum detection depends exponentially on the number of sub-carriers. Multistage detection for OFDM signals is proposed in this paper. The computational complexity of the multistage detection is linear in the number of sub-carriers. The performance of the multistage detection is compared with that of the optimum detection. Some simulation results show that the proposed multistage detection improves BER remarkably under the heavy carrier phase noise circumstances
相位噪声下OFDM信号的多级检测
在正交频分复用(OFDM)传输系统中,接收机中振荡器不稳定引起的相位噪声是一个潜在的严重问题,特别是当采用带宽高效的高阶信号星座时。在OFDM接收机中存在两种载波相位噪声效应。一种是由自身载波相位噪声引起的共同相位误差(CPE),另一种是由所有其他载波的相位噪声引起的载波间干扰(ICI)。由于ICL破坏了子载波的正交性,因此传统的FFT检测和决策并不是很好的选择。最优检测基于最大似然序列估计。但最优检测的计算复杂度与子载波数量呈指数关系。本文提出了OFDM信号的多级检测方法。多级检测的计算复杂度与子载波数量呈线性关系。对多级检测与最优检测的性能进行了比较。仿真结果表明,在载波相位噪声较重的情况下,多级检测显著提高了误码率
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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