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IB-DFE based equalizer for constant envelop OFDM systems

机译:用于恒定包络OFDM系统的基于IB-DFE的均衡器

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Constant envelope OFDM (CE-OFDM) is a promising modulation technique for future millimeter wave (mmW) based wireless communications, since it allows low-cost and highly efficient power amplification based on strongly nonlinear amplifiers. The aim of this paper is to design a new iterative space-frequency equalizer, based on iterative block decision feedback equalization (IB-DFE) principle, for multiplexing MIMO CE-OFDM based systems. The equalizer is designed to take into account both inter-block and residual inter-carrier interferences by efficiently exploit the space-frequency diversity order inherent to these systems. The matrices for this iterative space-frequency equalizer are obtained by minimizing the overall mean square error (MSE) of all data streams at each subcarrier. Our iterative scheme significantly outperforms the linear frequency domain equalizers, recently considered for CE-OFDM, with only a few iterations.
机译:恒定包络OFDM(CE-OFDM)是一种用于未来基于毫米波(mmW)的无线通信的有前途的调制技术,因为它允许基于强非线性放大器的低成本和高效功率放大。本文的目的是基于迭代块决策反馈均衡(IB-DFE)原理,设计一种新的迭代空频均衡器,用于基于MIMO CE-OFDM的系统的复用。均衡器旨在通过有效利用这些系统固有的空频分集阶数来考虑块间干扰和残余载波间干扰。通过最小化每个子载波上所有数据流的整体均方误差(MSE),可以获得此迭代空频均衡器的矩阵。我们的迭代方案仅经过几次迭代,明显优于最近考虑用于CE-OFDM的线性频域均衡器。

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