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Single-carrier frequency domain equalisation with hierarchical constellations: an efficient transmission technique for broadcast and multicast systems

机译:具有分层星座的单载波频域均衡:广播和多播系统的有效传输技术

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摘要

Orthogonal frequency division multiplexing (OFDM) schemes are the choice modulation for broadband wireless broadcast and multicast systems. However, OFDM schemes have important limitations such as high-envelope fluctuation of the transmitted signals and its sensibility to carrier frequency errors. When these limitations prove critical the authors consider single-carrier frequency-domain equalisation (SC-FDE) schemes, that allow much higher power efficiency because of lower envelope fluctuations. The overall performance can be further improved if the conventional linear FDE is replaced by an iterative FDE such as an iterative block decision feedback equaliser (IB-DFE). Conventional IB-DFE are usually designed for a quadrature phase shift keying constellation. However, it is strongly recommended that broadcast and multicast systems employ hierarchical constellations with several classes of bits with different error protection. In this study the authors consider the use of SC-FDE schemes combined with IB-DFE receivers in broadband wireless broadcast and multicast systems. The authors emphasise the advantages of these schemes and the authors present IB-DFE designs suitable for hierarchical constellations with several classes of bits with different error protection.
机译:正交频分复用(OFDM)方案是宽带无线广播和多播系统的选择调制。然而,OFDM方案具有重要的局限性,例如发射信号的高包络波动及其对载频误差的敏感性。当这些局限性变得至关重要时,作者考虑采用单载波频域均衡(SC-FDE)方案,该方案由于包络波动较小,因此可以实现更高的功率效率。如果将常规线性FDE替换为迭代FDE(例如迭代块决策反馈均衡器(IB-DFE)),则可以进一步提高总体性能。常规的IB-DFE通常设计用于正交相移键控星座。但是,强烈建议广播和多播系统使用具有几种类别的比特且具有不同错误保护的分层星座。在这项研究中,作者考虑在宽带无线广播和组播系统中结合使用SC-FDE方案和IB-DFE接收器。作者强调了这些方案的优势,并且作者提出了适用于具有几类具有不同错误保护位的分层星座的IB-DFE设计。

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