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Design and FPGA implementation of a SISO and a MIMO wireless system for software defined radio.

机译:用于软件定义无线电的SISO和MIMO无线系统的设计和FPGA实现。

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摘要

MIMO (Multiple-input Multiple-output) technology combined with space time coding techniques provides significant increase in performance and capacity over an equivalent SISO (Single-input Single-output) system while maintaining the same bandwidth and transmission power. MIMO has emerged as the major breakthrough in recent communication technologies. To migrate from SISO to MIMO system, multiple RF (Radio Frequency) front ends and additional signal processing are required. Software defined radio (SDR) allows MIMO and other evolving techniques to be added to current systems through software update instead of hardware replacement. SDR provides a flexible and economic solution to the system upgrade and migration.;The design and implementation are processed based on a system-level design flow. System modeling and simulation are performed using Xilinx's System Generator for DSP and Simulink. After it is mapped to HDL (Hardware Description Language) netlist, the design is synthesized and implemented by Xilinx's ISE tool. The generated bit-stream is then downloaded to target FPGA to program the device. The hardware performance is measured by BER (Bit Error Rate) tester, oscilloscope and spectrum analyzer.;This thesis is an initial project for future work of Wireless Design Laboratory at Concordia University. The system realized in this project can be viewed as a base of future MIMO implementation with different number of antennas and advanced signal processing techniques.;In this thesis, an SDR based SISO system using QPSK modulation scheme is implemented on FPGA. The system produces signal with an intermediate frequency of 25 MHz and throughput of 12.5 Mbps. One carrier recovery and two symbol timing recovery algorithms (Gardner and Maximum Likelihood) are investigated and implemented. A 2x1 MIMO system using Alamouti scheme and CORDIC based carrier recovery is designed as well. The SDR based SISO system can be easily incorporated to the MIMO design. Throughout this thesis, detailed design information is presented along with both computer simulation results and real hardware performance. The comparisons of different algorithms and component structures are also provided. Based on these comparisons, the suitable algorithm or structure according to specific implementation considerations and system requirement can be selected.
机译:MIMO(多输入多输出)技术与空时编码技术相结合,与同等的SISO(单输入单输出)系统相比,可显着提高性能和容量,同时保持相同的带宽和传输功率。 MIMO已成为最近通信技术的重大突破。为了从SISO迁移到MIMO系统,需要多个RF(射频)前端和额外的信号处理。软件定义无线电(SDR)允许通过软件更新而不是硬件更换将MIMO和其他演进技术添加到当前系统中。 SDR为系统升级和迁移提供了灵活而经济的解决方案。;设计和实现是基于系统级设计流程进行处理的。使用Xilinx的DSP和Simulink的系统生成器进行系统建模和仿真。将其映射到HDL(硬件描述语言)网表后,该设计将由Xilinx的ISE工具进行综合和实现。然后将生成的比特流下载到目标FPGA,以对该器件进行编程。硬件性能通过BER(误码率)测试仪,示波器和频谱分析仪进行测量。本文是Concordia大学无线设计实验室未来工作的初步项目。该项目实现的系统可以看作是未来天线数目不同,信号处理技术先进的MIMO实现的基础。本文采用QPSK调制方案在SDR上实现了基于SDR的SISO系统。该系统产生的信号具有25 MHz的中频和12.5 Mbps的吞吐量。研究并实现了一种载波恢复和两种符号定时恢复算法(Gardner和最大似然)。还设计了使用Alamouti方案和基于CORDIC的载波恢复的2x1 MIMO系统。基于SDR的SISO系统可以轻松地集成到MIMO设计中。在整个论文中,给出了详细的设计信息以及计算机仿真结果和实际硬件性能。还提供了不同算法和组件结构的比较。基于这些比较,可以根据特定的实现注意事项和系统要求选择合适的算法或结构。

著录项

  • 作者

    Dong, Peng.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Computer.
  • 学位 M.A.Sc.
  • 年度 2009
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:55

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