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Grant-Free Massive Random Access With a Massive MIMO Receiver

机译:具有大规模MIMO接收器的免费授权大规模随机访问

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We consider the problem of unsourced random access (U-RA), a grant-free uncoordinated form of random access, in a wireless channel with a massive MIMO base station equipped with a large number M of antennas and a large number of wireless single-antenna devices (users). We consider a block fading channel model where the M-dimensional channel vector of each user remains constant over a coherence block containing L signal dimensions in time-frequency. In the considered setting, the number of potential users Ktot is much larger than L but at each time slot only Ka ≪ Ktot of them are active. Previous results, based on compressed sensing, require that Ka ≤ L, which is a bottleneck in massive deployment scenarios such as Internet-of-Things and U-RA. In the context of activity detection it is known that such a limitation can be overcome when the number of base station antennas M is sufficiently large and a covariance based recovery algorithm is employed at the receiver. We show that, in the context of U-RA, the same concept allows to achieve high spectral efficiencies in the order of O(L log L), although at an exponentially growing complexity. We show also that a concatenated coding scheme can be used to reduce the complexity to an acceptable level while still achieving total spectral efficiencies in the order of O(L/log L).
机译:我们考虑了无线源中的无源随机接入(U-RA)问题,这是一种无授权的非协调形式的随机接入,该无线信道具有配备了M个天线和大量无线单基站的大型MIMO基站。天线设备(用户)。我们考虑一个块衰落信道模型,其中每个用户的M维信道向量在时频上包含L个信号维的相干块上保持恒定。在考虑的设置中,潜在用户数K 全部 比L大得多,但在每个时隙只有K a ≪ K 全部 他们是活跃的。基于压缩感知的先前结果要求K a ≤L,这是物联网和U-RA等大规模部署方案的瓶颈。在活动检测的上下文中,已知的是,当基站天线M的数量足够大并且在接收机处采用基于协方差的恢复算法时,可以克服这种限制。我们表明,在U-RA的背景下,尽管复杂度呈指数级增长,但相同的概念仍可实现O(L log L)量级的高光谱效率。我们还表明,级联编码方案可用于将复杂度降低到可接受的水平,同时仍可达到O(L / log L)量级的总频谱效率。

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