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Random Pilot and Data Access in Massive MIMO for Machine-Type Communications

机译:大规模MIMO中用于机器类型通信的随机导频和数据访问

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摘要

A massive MIMO system, represented by a base station with hundreds of antennas, is capable of spatially multiplexing many devices and thus naturally suited to serve dense crowds of wireless devices in emerging applications, such as machine-type communications. Crowd scenarios pose new challenges in the pilot-based acquisition of channel state information and call for pilot access protocols that match the intermittent pattern of device activity. A joint pilot assignment and data transmission protocol based on random access is proposed in this paper for the uplink of a massive MIMO system. The protocol relies on the averaging across multiple transmission slots of the pilot collision events that result from the random access process. We derive new uplink sum rate expressions that take pilot collisions, intermittent device activity, and interference into account. Simplified bounds are obtained and used to optimize the device activation probability and pilot length. A performance analysis indicates how performance scales as a function of the number of antennas and the transmission slot duration.
机译:以具有数百个天线的基站为代表的大规模MIMO系统能够在空间上复用许多设备,因此自然适合在新兴应用(例如机器类型的通信)中为密集的无线设备提供服务。人群场景在基于飞行员的信道状态信息获取中提出了新的挑战,并要求与设备活动的间歇性模式相匹配的飞行员访问协议。针对大规模MIMO系统的上行链路,提出了一种基于随机接入的联合导频分配和数据传输协议。该协议依赖于由随机访问过程导致的导频冲突事件的多个传输时隙的平均。我们导出了新的上行链路总速率表达式,该表达式考虑了导频冲突,间歇性设备活动和干扰。获得简化的边界,并将其用于优化设备激活概率和导频长度。性能分析表明性能如何随天线数量和传输时隙持续时间而变化。

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