未知双选择信道下带CFO的QAM OFDM优化迭代(turbo)接收

T. Ketseoglou, H. Wymeersch
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引用次数: 1

摘要

介绍了一种适用于正交频分复用(OFDM)的采用正交调幅(QAM)和接收机分集的新型迭代(turbo)接收机。该系统在双选择信道上工作,并包括载波频率偏移(CFO)。我们提出了一种最大后验概率期望最大化(MAP-EM)接收机,其EM参数划分与标准方法不同。在这种标准MAP-EM接收机中,e步参数对应信道,m步参数对应CFO和数据符号。由于调制符号字母表尺寸大,星座符号幅度不恒定,这种标准的接收机参数划分导致QAM接收机高度复杂。在本文中,一个新的接收机框架引入了一种不同的参数划分,从而降低了QAM信令的turbo接收机的复杂性,同时仍然达到接近最佳的系统性能。该方法将和积算法(SPA)参数框架应用于MAP-EM接收机。因此,在新的接收机框架中,e步参数为数据符号,m步参数为信道和CFO。我们评估了有和没有自动重复请求(ARQ)的拟议接收器的性能,其中在前一种情况下,数据包合并适用于进一步提高性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimized iterative (turbo) reception for QAM OFDM with CFO over unknown double-selective channels
A novel iterative (turbo) receiver is introduced, suitable for orthogonal frequency division multiplexing (OFDM) employing quadrature amplitude modulation (QAM) and receiver diversity. The system operates over a double-selective channel and includes a carrier frequency offset (CFO). We propose a maximum a posteriori probability expectation-maximization (MAP-EM) receiver with a different EM parameter division than standard methods. In such standard MAP-EM receivers, the E-step parameters correspond to the channel, while the M-step parameters correspond to the CFO and data symbols. This standard receiver parameter division results into a highly complex receiver for QAM, due to the large modulated symbol alphabet size, and the non-constant constellation symbol amplitude. In this paper, a new receiver framework introduces a different parameter division that leads to reduced complexity turbo receivers for QAM signaling, while still achieving close to optimal system performance. The new approach adapts the sum-product algorithm (SPA) parameter framework to the MAP-EM receiver. Thus, in the new receiver framework, the E-step parameters are data symbols, while the M-step parameters are the channel and the CFO. We evaluate the performance of the proposed receiver with and without automatic repeat request (ARQ), where in the former case packet combining applies to further improve performance.
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