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On Multiple-Input Multiple-Output OFDM with Index Modulation for Next Generation Wireless Networks

机译:下一代无线网络中带有索引调制的多输入多输出OFDM

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Multiple-input multiple-output orthogonal frequency division multiplexing with index modulation (MIMO-OFDM-IM) is a novel multicarrier transmission technique which has been proposed recently as an alternative to classical MIMO-OFDM. In this scheme, OFDM with index modulation (OFDM-IM) concept is combined with MIMO transmission to take advantage of the benefits of these two techniques. In this paper, we shed light on the implementation and error performance analysis of the MIMO-OFDM-IM scheme for next generation 5G wireless networks. Maximum likelihood (ML), near-ML, simple minimum mean square error (MMSE) and ordered successive interference cancellation (OSIC) based MMSE detectors of MIMO-OFDM-IM are proposed, and their theoretical performance is investigated. It has been shown via extensive computer simulations that MIMO-OFDM-IM scheme provides an interesting tradeoff between error performance and spectral efficiency as well as it achieves considerably better error performance than classical MIMO-OFDM using different type detectors and under realistic conditions.
机译:具有索引调制的多输入多输出正交频分复用(MIMO-OFDM-IM)是一种新的多载波传输技术,最近已经提出作为经典MIMO-OFDM的替代方案。在此方案中,具有索引调制(OFDM-IM)概念的OFDM与MIMO传输相结合,以利用这两种技术的优势。在本文中,我们阐明了用于下一代5G无线网络的MIMO-OFDM-IM方案的实现和错误性能分析。提出了基于最大似然(ML),接近ML,简单最小均方误差(MMSE)和基于有序连续干扰消除(OSIC)的MIMO-OFDM-IM MMSE检测器,并对其理论性能进行了研究。通过广泛的计算机仿真已经表明,MIMO-OFDM-IM方案在错误性能和频谱效率之间提供了有趣的折衷,并且与使用不同类型检测器并在实际条件下的经典MIMO-OFDM相比,它实现了明显更好的错误性能。

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