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Intra-Node B Orthogonal Pilot Channel Structure for OFDM Radio Access in Evolved UTRA Downlink

机译:演进的UTRA下行链路中用于OFDM无线电接入的节点内B正交导频信道结构

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This paper proposes an intra-Node B orthogonal pilot channel structure employing a sector-specific orthogonal sequence and cell-specific (Node B-specific) scrambling code for Orthogonal Frequency Division Multiplexing (OFDM)-based radio access in the E-UTRA downlink. This paper also proposes a sophisticated orthogonal pilot channel employing code division multiplexing (CDM) to separate sectored beams and distributed frequency division multiplexing (FDM) to separate streams (transmission antennas) in MIMO channel transmissions simultaneously. Successive simulation results verify the effectiveness of the proposed orthogonal pilot channel structures using distributed FDM among multiple streams and CDM between sectored beams. Furthermore, the simulation results also show that the average packet error rate (PER) performance using the proposed intra-Node B orthogonal pilot channel is significantly improved compared to that of the conventional structure employing a random sequence, particularly for 16QAM and 64QAM modulations under high intra-Node B interference-to-desired signal power ratio conditions.
机译:本文提出了一个节点内的B型正交导频信道结构,采用扇区特定的正交序列和小区特定的(节点B特定)扰码用于正交频分复用(OFDM)的基于E-UTRA下行链路中的基于频分复用(OFDM)的扰码。本文还提出了一种专业的正交导频信道,采用码分复用(CDM)将扇形波束和分布式频分复用(FDM)同时地分离在MIMO信道传输中的流(传输天线)。连续仿真结果验证了在扇区光束之间的多个流和CDM之间使用分布式FDM的所提出的正交导频信道结构的有效性。此外,仿真结果还表明,与采用随机序列的传统结构相比,使用所提出的内部节点B正交导频信道的平均分组误差率(每)性能显着提高,特别是在高度下进行16QAM和64QAM调制节点内的B间干扰到期望的信号功率比条件。

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