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Cooperative lattice coding and decoding in half-duplex channels

机译:半双工信道中的协作晶格编码和解码

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摘要

We propose novel lattice coding/decoding schemes for half-duplex outage-limited cooperative channels. These schemes are inspired by the cooperation protocols of Azarian et al. and enjoy an excellent performance-complexity tradeoff. More specifically, for the. relay channel, we first use our lattice coding framework to generalize Yang and Belfiore implementation of the non-orthogonal amplify and forward cooperation protocol. This generalization is shown to offer significant performance gains while keeping the decoding complexity manageable. We then devise a novel variant of the dynamic decode and forward protocol, along with a lattice-coded implementation, which enjoys a near-optimal diversity-multiplexing tradeoff with a low encoding/decoding complexity. Finally, for the cooperative multiple-access channel, we present a lattice-coded implementation of the non-orthogonal amplify and forward protocol and demonstrate its excellent performance-complexity tradeoff. Throughout the paper, we establish the performance gains of our proposed protocols via a comprehensive simulation study
机译:我们为半双工中断受限的协作信道提出了新颖的点阵编码/解码方案。这些方案受Azarian等人合作协议的启发。并享有出色的性能-复杂度折衷。更具体地来说。中继通道,我们首先使用我们的晶格编码框架来概括非正交放大和正向合作协议的Yang和Belfiore实现。这种概括显示出在保持解码复杂度可管理的同时提供了显着的性能提升。然后,我们设计了一种动态解码和转发协议的新颖变体,以及一种晶格编码的实现方式,该实现方式具有接近最优的分集多路复用权衡,并且编码/解码复杂度较低。最后,对于协作式多路访问信道,我们提出了非正交放大和转发协议的晶格编码实现,并证明了其出色的性能-复杂性折衷。在整篇论文中,我们通过全面的模拟研究确定了所提出协议的性能提升

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