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Novel Receiver Architecture for LTE-A Downlink Physical Control Format Indicator Channel with Diversity

机译:具有多样性的LTE-A下行链路物理控制格式指示符通道的新型接收器架构

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Physical control format indicator channel (PCFICH) carries the control information about the number of orthogonal frequency division multiplexing (OFDM) symbols used for transmission of control information in long term evolution-advanced (LTE-A) downlink system. In this paper, two novel low complexity receiver architectures are proposed to implement the maximum likelihood- (ML-) based algorithm which decodes the CFI value in field programmable gate array (FPGA) at user equipment (UE). The performance of the proposed architectures is analyzed in terms of the timing cycles, operational resource requirement, and resource complexity. In LTE-A, base station and UE have multiple antenna ports to provide transmit and receive diversities. The proposed architectures are implemented in Virtex-6 xc6vlx240tff1156-1 FPGA device for various antenna configurations at base station and UE. When multiple antenna ports are used at base station, transmit diversity is obtained by applying the concept of space frequency block code (SFBC). It is shown that the proposed architectures use minimum number of operational units in FPGA compared to the traditional direct method of implementation.
机译:物理控制格式指示符信道(PCFICH)承载有关在长期演进高级(LTE-A)下行链路系统中用于传输控制信息的正交频分复用(OFDM)符号数量的控制信息。在本文中,提出了两种新颖的低复杂度接收机体系结构,以实现基于最大似然(ML)的算法,该算法对用户设备(UE)的现场可编程门阵列(FPGA)中的CFI值进行解码。根据时序周期,操作资源需求和资源复杂性来分析所提出体系结构的性能。在LTE-A中,基站和UE具有多个天线端口以提供发射和接收分集。拟议的架构在Virtex-6 xc6vlx240tff1156-1 FPGA器件中实现,用于基站和UE的各种天线配置。当基站使用多个天线端口时,通过应用空频分组码(SFBC)的概念来获得发射分集。结果表明,与传统的直接实现方法相比,所提出的体系结构在FPGA中使用的运算单元数量最少。

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