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Joint Random Pilot and Multi-Slot Access in Massive MIMO for Space Information Networks

机译:空间信息网大规模MIMO中的联合随机导频和多时隙接入

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Space information networks (SINs) is viewed as an effective solution to provide broadband access in a seamless and cost-effective manner for future machine-to-machine communications. Moreover, massive multiple-input multiple-output (MIMO) technology over satellites has received a great deal of interests. To solve the problem of pilot collision in the crowded massive MIMO system for SIN, a joint random pilot and multi-slot access (JRPMSA) protocol is proposed. Our JRPMSA protocol allows the failed user equipments (UEs) to reselect a pilot from the remaining pilots in multi-slots, i.e., the pilots that are not selected by any UE or selected by more than one UE in the initial step. The random access satellite estimates and buffers the channel response on each pilot of each UE in multi-slots. By utilizing the and-or tree theory, we analyzed the performance of the JRPMSA protocol, mainly focus on the access failure probability and uplink throughput. Simulation results shows that the proposed JRPMSA protocol can obviously decrease the access failure probability and increase the peak throughput.
机译:空间信息网络(SIN)被视为一种有效的解决方案,可以无缝且经济高效地为未来的机器对机器通信提供宽带访问。此外,卫星上的大规模多输入多输出(MIMO)技术引起了广泛的关注。为了解决SIN拥挤大规模MIMO系统中的导频冲突问题,提出了一种联合随机导频和多时隙接入(JRPMSA)协议。我们的JRPMSA协议允许发生故障的用户设备(UE)从多时隙中的其余导频中重新选择一个导频,即在初始步骤中未被任何UE选择或由一个以上UE选择的导频。随机接入卫星在多时隙中估计并缓冲每个UE的每个导频上的信道响应。通过使用“与”或“树”理论,我们分析了JRPMSA协议的性能,主要关注访问失败概率和上行吞吐量。仿真结果表明,所提出的JRPMSA协议可以明显降低访问失败的概率,并提高峰值吞吐量。

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