An Efficient FPGA-Based Frequency Shifter for LTE/LTE-A Systems

F. A. P. Figueiredo, Fabbryccio A. C. M. Cardoso
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Abstract

The Physical Random Access Channel plays an important role in LTE and LTE-A systems. Through this channel, the user equipment aligns its uplink transmissions to the eNodeB ’ s uplink and gains access to the network. One of the initial operations executed by the receiver at eNodeB side is the translation of the channel ’ s signal back to base-band. This operation is a necessary step for preamble detection and can be executed through a time-domain frequency-shift operation. Therefore, in this paper, we present the hardware architecture and design details of an optimised and configurable FPGA-based time-domain frequency shifter. The proposed architecture is based on a customised Numerically Controlled Oscillator that is employed for creating complex exponential samples using only plain logical resources. The main advantage of the proposed architecture is that it completely removes the necessity of saving in memory a huge number of long complex exponentials by making use of a Look-Up Table and exploiting the quarter-wave symmetry of the basis waveform. The results demonstrate that the proposed architecture provides high Spurious Free Dynamic Range signals employing only a minimal number of FPGA resources. Additionally, the proposed architecture presents spur-suppression ranging from 62.13 to 153.58 dB without employing any correction.
LTE/LTE- a系统中一种高效的fpga移频器
物理随机接入信道在LTE和LTE- a系统中起着重要的作用。通过该通道,用户设备将其上行链路传输到eNodeB的上行链路,从而接入网络。接收机在eNodeB端执行的初始操作之一是将信道信号转换回基带。该操作是前置检测的必要步骤,可以通过时域频移操作来执行。因此,在本文中,我们提出了一个优化和可配置的基于fpga的时域移频器的硬件架构和设计细节。所提出的架构是基于一个定制的数控振荡器,用于创建复杂的指数样本,仅使用普通的逻辑资源。所提出的体系结构的主要优点是,它完全消除了通过使用查找表和利用基波形的四分之一波对称性在内存中保存大量长复指数的必要性。结果表明,该架构仅使用少量FPGA资源就能提供高无杂散动态范围的信号。此外,该结构的杂散抑制范围为62.13 ~ 153.58 dB,无需任何校正。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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