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Wireless multi-carrier communication system design and implementation using a custom hardware and software FPGA platform

机译:使用定制硬件和软件FPGA平台的无线多载波通信系统设计和实现

摘要

Field Programmable Gate Array (FPGA) devices and high-level hardware development languages represent a new and exciting addition to traditional research tools, where simulation models can be evaluated by the direct implementation of complex algorithms and processes. Signal processing functions that are based on well known and standardised mathematical operations, such as Fast Fourier Transforms (FFTs), are well suited for FPGA implementation. At UCL, research is on-going on the design, modelling and simulation of Frequency Division Multiplexing (FDM) techniques such as Spectrally E - cient Frequency Division Multiplexing (SEFDM) which, for a given data rate, require less bandwidth relative to equivalent Orthogonal Frequency Division Multiplexing (OFDM). SEFDM is based around standard mathematical functions and is an ideal candidate for FPGA implementation. The aim of the research and engineering work reported in this thesis is to design and implement a system that generates SEFDM signals for the purposes of testing and veri cation, in real communication environments. The aim is to use FPGA hardware and Digital to Analogue Converters (DACs) to generate such signals and allow recon gurability using standard interfaces and user friendly software. The thesis details the conceptualisation, design and build of an FPGA-based wireless signal generation platform. The characterisation applied to the system, using the FPGA to drive stimulus signals is reported and the thesis will include details of the FPGA encapsulation of the minimum protocol elements required for communication (of control signals) over Ethernet. Detailed testing of the hardware is reported, together with a newly designed in the loop testing methodology. Veri ed test results are also reported with full details of time and frequency results as well as full FPGA design assessment. Altogether, the thesis describes the engineering design, construction and testing of a new FPGA hardware and software system for use in communication test scenarios, controlled over Ethernet.
机译:现场可编程门阵列(FPGA)器件和高级硬件开发语言代表了传统研究工具中令人兴奋的新内容,在这些研究工具中,可以通过直接实施复杂算法和过程来评估仿真模型。基于众所周知的标准化数学运算的信号处理功能,例如快速傅立叶变换(FFT),非常适合FPGA实现。在UCL,正在进行对频分复用(FDM)技术(例如频谱有效的频分复用(SEFDM))的设计,建模和仿真的研究,对于给定的数据速率,该技术相对于等效正交技术需要的带宽更少频分复用(OFDM)。 SEFDM基于标准数学函数,是FPGA实现的理想选择。本文报道的研究和工程工作的目的是设计和实现一个在实际通信环境中生成SEFDM信号以进行测试和验证的系统。目的是使用FPGA硬件和数模转换器(DAC)生成此类信号,并使用标准接口和用户友好的软件实现可重构性。本文详细介绍了基于FPGA的无线信号生成平台的概念,设计和构建。报告了使用FPGA驱动激励信号应用于系统的特性,并且论文将详细介绍FPGA封装(通过控制信号进行以太网通信)所需的最小协议元素的细节。报告了硬件的详细测试,以及新设计的环路测试方法。还报告了经过验证的测试结果,包括时间和频率结果的完整详细信息以及完整的FPGA设计评估。总之,本文描述了一种新的FPGA硬件和软件系统的工程设计,构建和测试,该系统用于通过以太网控制的通信测试场景。

著录项

  • 作者

    Perrett MR;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 20:23:06

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