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The design, simulation and syntehsis of a pipelined VHDL floating-point radix-4 fast Fourier transform data path.

机译:流水线式VHDL浮点基数4快速傅里叶变换数据路径的设计,仿真和综合。

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摘要

The Fast Fourier Transform (FFT) converts time or spatial information into the frequency domain. The FFT is one of the most widely used digital signal processing (DSP) algorithms. DSPs are used in a number of applications from communication and controls to speech and image processing. DSPs have also found their way into toys, music synthesizers and in most digital instruments.Many applications have relied on Digital Signal Processors and Application Specific Integrated Circuits (ASIC) for most of the signal processing needs. DSPs provide an adequate means of performance and efficiency for many applications as well as robust tools to ease the development process. However, the requirements of important emerging DSP applications have begun to exceed the capabilities of DSPs. With this in mind, system developers have begun to consider alternatives such as ASICs and Field Programmable Gate Arrays (FPGA). Although ASICs can provide excellent performance and efficiency, the time, cost and risk associated with the design of ASICs is leading developers towards FPGAs. A number of significant advances in FPGA technology have improved the suitability of FPGAs for DSP applications. These advances include increased device capacity and speed, DSP-oriented architectural enhancements, better DSP-oriented tools, and increasing availability of DSP-oriented IP libraries.The thesis research focuses on the design of a single precision floating-point radix-4 FFT FPGA using VHDL for real time DSP applications. The paper will go into further detail pertaining to the FFT algorithm used, the description of the design steps taken as well as the results from both simulation and synthesis.
机译:快速傅立叶变换(FFT)将时间或空间信息转换为频域。 FFT是应用最广泛的数字信号处理(DSP)算法之一。从通信和控制到语音和图像处理,DSP被用于许多应用中。 DSP也已进入玩具,音乐合成器和大多数数字乐器中。许多应用都依靠数字信号处理器和专用集成电路(ASIC)来满足大多数信号处理需求。 DSP为许多应用程序提供了足够的性能和效率手段,并提供了简化开发过程的强大工具。但是,重要的新兴DSP应用程序的需求已开始超过DSP的功能。考虑到这一点,系统开发人员已开始考虑替代方案,例如ASIC和现场可编程门阵列(FPGA)。尽管ASIC可以提供出色的性能和效率,但是与ASIC设计相关的时间,成本和风险正在引导开发人员转向FPGA。 FPGA技术的许多重大进步​​提高了FPGA在DSP应用中的适用性。这些进步包括设备容量和速度的提高,面向DSP的体系结构增强,面向DSP的更好的工具以及面向DSP的IP库的可用性的提高。本文的研究集中在单精度浮点基数4 FFT FPGA的设计上。使用VHDL进行实时DSP应用。本文将进一步详细讨论所使用的FFT算法,设计步骤的描述以及仿真和综合的结果。

著录项

  • 作者

    Nicklous, Francis E.;

  • 作者单位

    Temple University.;

  • 授予单位 Temple University.;
  • 学科 Engineering Computer.Engineering Electronics and Electrical.
  • 学位 M.S.E.E.
  • 年度 2010
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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