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首页> 外文期刊>Journal of communications and networks >Low-complexity distributed algorithms for uplink CoMP in heterogeneous LTE networks
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Low-complexity distributed algorithms for uplink CoMP in heterogeneous LTE networks

机译:异构LTE网络中用于上行链路CoMP的低复杂度分布式算法

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摘要

Coordinated multi-point transmission (CoMP) techniques are being touted as enabling technologies for interference mitigation in next generation heterogeneous wireless networks (HetNets). In this paper, we present a comparative performance study of uplink (UL) CoMP algorithms for the 3GPP LTE HetNets. Focusing on a distributed and functionally-split architecture, we consider six distinct UL-CoMP algorithms: 1. Joint reception in the frequency-domain (JRFD) 2. Two-stage equalization (TSEQ) 3. Log-likelihood ratio exchange (LLR-E) 4. Symmetric TSEQ (S-TSEQ) 5. Transport block selection diversity (TBSD) 6. Coordinated scheduling with adaptive interference mitigation (CS-AIM) where JRFD, TSEQ, S-TSEQ, TBSD and CS-AIM are our main contributions in this paper, and quantify their relative performances via the post-processing signal-to-interference-plus-noise ratio distributions. We also compare the CoMP-specific front-haul rate requirements for all the schemes considered in this paper. Our results indicate that, with a linear minimum mean-square error receiver, the JRFD and TSEQ have identical performances, whereas S-TSEQ relaxes the front-haul latency requirements while approaching the performance of TSEQ. Furthermore, in a HetNet environment, we find that CS-AIM provides an attractive alternative to TBSD and LLR-E with a significantly reduced CoMP-specific front-haul rate requirement.
机译:协作多点传输(CoMP)技术被吹捧为下一代异构无线网络(HetNets)中减轻干扰的支持技术。在本文中,我们提出了针对3GPP LTE HetNets的上行链路(UL)CoMP算法的比较性能研究。针对分布式和功能分离的架构,我们考虑了六种不同的UL-CoMP算法:1.频域中的联合接收(JRFD)2.两阶段均衡(TSEQ)3.对数似然比交换(LLR- E)4.对称TSEQ(S-TSEQ)5.传输块选择分集(TBSD)6.带有自适应干扰缓解的协作调度(CS-AIM),其中JRFD,TSEQ,S-TSEQ,TBSD和CS-AIM是我们的主要任务论文的主要贡献,并通过后处理信噪比分布来量化它们的相对性能。我们还针对本文考虑的所有方案比较了特定于CoMP的前传速率要求。我们的结果表明,对于线性最小均方误差接收器,JRFD和TSEQ具有相同的性能,而S-TSEQ则在接近TSEQ的性能时放宽了前途延迟要求。此外,在HetNet环境中,我们发现CS-AIM提供了有吸引力的TBSD和LLR-E替代方案,并且大大降低了特定于CoMP的前传速率要求。

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