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首页> 外文期刊>Wireless Communications Letters, IEEE >Achieving Fair Random Access Performance in Massive MIMO Crowded Machine-Type Networks
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Achieving Fair Random Access Performance in Massive MIMO Crowded Machine-Type Networks

机译:在大规模MIMO拥挤机型网络中实现公平的随机访问性能

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The use of massive multiple-input multiple-output (MIMO) to serve a crowd of user equipments (UEs) is challenged by the deficit of pilots. Assuming that the UEs are intermittently active, this problem can be addressed by a shared access to the pilots and a suitable random access (RA) protocol. The strongest-user collision resolution (SUCRe) is a previously proposed RA protocol that often privileges the UEs closer to the base station (BS). In contrast, we propose a novel RA protocol using a decentralized pilot power allocation method that aims at a fairer performance. The proposed access class barring with power control (ACBPC) protocol allows each UE to estimate, without additional overhead, how many UEs collided for the chosen pilot and calculate an ACB factor, which is then used to determine the pilot retransmission probability in the next protocol step. The results show that the proposed ACBPC protocol is superior to SUCRe in terms of providing a fair connectivity for very crowded networks, although still being distributed and uncoordinated as the original SUCRe protocol.
机译:使用大规模的多输入多输出(MIMO)来服务一群用户设备(UE)受到飞行员缺陷的挑战。假设UE是间歇地活动的,可以通过对导频的共享访问和合适的随机接入(RA)协议来解决该问题。最强用户的冲突分辨率(SUCRE)是先前提出的RA协议,其经常将UE更靠近基站(BS)的权限。相比之下,我们提出了一种使用分散的试点电力分配方法提出了一种旨在更公平的性能的分散的试点电力分配方法。具有功率控制(ACBPC)协议的所提出的访问类禁止允许每个UE估计,而无需额外的开销,用于所选的导频的许多UE和计算ACB因子,然后用于确定下一个协议中的导频重传概率步。结果表明,拟议的ACBPC协议优于苏克雷,以便为非常拥挤的网络提供公平的连接,尽管仍作为原始SUCRE协议分发和不协调。

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