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Design of Orthogonal Uplink Pilot Sequences for TDD Massive MIMO under Pilot Contamination

机译:导频污染下TDD大规模MIMO的正交上行导频序列设计

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Massive MIMO has been acknowledged as a promising technology to counter the demand for higher data capacity for wireless networks in 2020 and beyond. However, each Base Station (BS) requires good enough knowledge of Channel State Information (CSI) on both the uplink and the downlink as massive MIMO relies on spatial multiplexing. In Time Division Duplex (TDD) massive MIMO systems, this CSI is acquired using channel reciprocity. However, the use of non- orthogonal uplink pilot sequence due to limited coherence time leads to pilot contamination in TDD massive MIMO systems that results in inter-cell interference in the downlink data transmission. This paper proposes a design of orthogonal uplink pilot sequences for multi-cell TDD massive MIMO systems. We propose to use Zadoff-Chu Pilot Sequences (ZCPS) and eliminate pilot contamination during channel estimation process. In the proposed design, each BS is assigned with a specific orthogonal code and the set of ZCPS is multiplied element-wise at each BS with BS-specific orthogonal code to generate orthogonality among pilot sequences across neighboring cells. The proposed design eliminates pilot contamination during channel estimation process thus achieves significant sum-rate gains as verified by the simulation results.
机译:大规模MIMO已被公认为是一种有前途的技术,可以应对2020年及以后无线网络对更高数据容量的需求。但是,由于大规模MIMO依赖于空间复用,因此每个基站(BS)都需要对上行链路和下行链路的信道状态信息(CSI)有足够的了解。在时分双工(TDD)大规模MIMO系统中,使用信道互易性获取此CSI。然而,由于有限的相干时间而导致的非正交上行链路导频序列的使用导致TDD大规模MIMO系统中的导频污染,这导致下行链路数据传输中的小区间干扰。本文提出了一种用于多小区TDD大规模MIMO系统的正交上行链路导频序列的设计。我们建议使用Zadoff-Chu导频序列(ZCPS),并在信道估计过程中消除导频污染。在提出的设计中,为每个BS分配了特定的正交码,并且在每个BS处将ZCPS集与BS特定的正交码逐元素相乘,以在相邻小区的导频序列之间生成正交性。拟议的设计消除了信道估计过程中的导频污染,从而实现了显着的总速率增益,仿真结果证明了这一点。

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