首页> 外文会议>Annual Allerton Conference on Communication, Control, and Computing; 20040929-1001; Monticello,IL(US) >On the Achievable Diversity-Multiplexing Tradeoff in Half Duplex Cooperative Channels
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On the Achievable Diversity-Multiplexing Tradeoff in Half Duplex Cooperative Channels

机译:半双工合作信道中可实现的多样性-复用折衷

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In this paper, we propose novel cooperative transmission protocols for coherent flat-fading channels consisting of TV (half-duplex and single-antenna) partners and one cell site. In our work, we differentiate between the cooperative relay, broadcast, and multiple-access channels. The proposed protocols are evaluated using Zheng-Tse diversity-multiplexing tradeoff. For the relay channel, we investigate two classes of cooperation schemes; namely, Amplify and Forward (AF) and Decode and Forward (DF). For the first class, we propose a new AF protocol and show it to outperform the space-time coded protocol of Laneman and Wornell without requiring decoding/encoding at the relays. For the class of DF protocols, we develop a dynamic decode and forward (DDF) protocol that achieves the optimal tradeoff for multiplexing gains 0 ≤ r ≤ 1/N. Furthermore, with a single relay, the DDF protocol is shown to dominate the class of AF protocols for all multiplexing gains. The superiority of the DDF protocol is shown to be more significant in the cooperative broadcast channel. The situation is reversed in the cooperative multiple-access channel where we propose a new AF protocol that achieves the optimal tradeoff for all multiplexing gains. We also extend some of the proposed protocols to the automatic retransmission request (ARQ) scenario. Particularly, we will show that our single relay ARQ-DDF protocol is optimal for all multiplexing gains. A distinguishing feature of the proposed protocols is that they do not rely on orthogonal subspaces, allowing for a more efficient use of resources.
机译:在本文中,我们为由电视(半双工和单天线)伙伴和一个小区站点组成的相干平坦衰落信道提出了新颖的合作传输协议。在我们的工作中,我们区分了协作中继,广播和多址访问通道。拟议的协议使用正则分集复用权衡进行评估。对于中继通道,我们研究了两类合作方案:即,放大转发(AF)和解码转发(DF)。对于第一类,我们提出了一种新的AF协议,并表明它优于Laneman和Wornell的时空编码协议,而无需在中继上进行解码/编码。对于DF协议类别,我们开发了一种动态解码和转发(DDF)协议,该协议为复用增益0≤r≤1 / N实现了最佳折衷。此外,对于单个中继,对于所有多路复用增益,DDF协议显示出在AF协议类别中占主导地位。在协作广播频道中,DDF协议的优越性被证明更为重要。这种情况在协作式多路访问信道中得到了扭转,我们在该信道中提出了一种新的AF协议,该协议可以实现所有复用增益的最佳折衷。我们还将一些建议的协议扩展到自动重传请求(ARQ)方案。特别是,我们将证明我们的单中继ARQ-DDF协议对于所有复用增益都是最佳的。所提出协议的一个显着特征是它们不依赖于正交子空间,从而可以更有效地利用资源。

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