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首页> 外文期刊>Radio Science >Prototyping scalable digital signal processing systems for radio astronomy using dataflow models
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Prototyping scalable digital signal processing systems for radio astronomy using dataflow models

机译:使用数据流模型对射电天文学的可扩展数字信号处理系统进行原型设计

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摘要

There is a growing trend toward using high-level tools for design and implementation of radio astronomy digital signal processing (DSP) systems. Such tools, for example, those from the Collaboration for Astronomy Signal Processing and Electronics Research (CASPER), are usually platform-specific, and lack high-level, platform-independent, portable, scalable application specifications. This limits the designer's ability to experiment with designs at a high-level of abstraction and early in the development cycle. We address some of these issues using a model-based design approach employing dataflow models. We demonstrate this approach by applying it to the design of a tunable digital downconverter (TDD) used for narrow-bandwidth spectroscopy. Our design is targeted toward an FPGA platform, called the Interconnect Break-out Board (IBOB), that is available from the CASPER. We use the term TDD to refer to a digital downconverter for which the decimation factor and center frequency can be reconfigured without the need for regenerating the hardware code. Such a design is currently not available in the CASPER DSP library. The work presented in this paper focuses on two aspects. First, we introduce and demonstrate a dataflow-based design approach using the dataflow interchange format (DIF) tool for high-level application specification, and we integrate this approach with the CASPER tool flow. Secondly, we explore the trade-off between the flexibility of TDD designs and the low hardware cost of fixed-configuration digital downconverter (FDD) designs that use the available CASPER DSP library. We further explore this trade-off in the context of a two-stage downconversion scheme employing a combination of TDD or FDD designs.
机译:使用高级工具来设计和实现射电天文学数字信号处理(DSP)系统的趋势正在增长。这样的工具,例如,来自天文学信号处理和电子研究合作组织(CASPER)的工具,通常是特定于平台的,并且缺少高级的,独立于平台的,可移植的,可扩展的应用规范。这限制了设计师在较高的抽象水平和开发周期的早期进行设计试验的能力。我们使用采用数据流模型的基于模型的设计方法来解决其中的一些问题。我们通过将其应用于用于窄带宽光谱的可调数字下变频器(TDD)的设计来演示此方法。我们的设计针对的是FPGA平台,称为互连突破板(IBOB),可从CASPER购买。我们使用术语TDD来指代数字下变频器,无需重新生成硬件代码即可为其配置抽取因子和中心频率。这种设计目前在CASPER DSP库中不可用。本文介绍的工作集中在两个方面。首先,我们使用数据流交换格式(DIF)工具针对高级应用程序规范介绍和演示基于数据流的设计方法,并将此方法与CASPER工具流集成在一起。其次,我们探索了TDD设计的灵活性与使用可用CASPER DSP库的固定配置数字下变频器(FDD)设计的低硬件成本之间的折衷。我们在结合TDD或FDD设计的两阶段下变频方案的背景下进一步探讨了这种折衷方案。

著录项

  • 来源
    《Radio Science》 |2012年第3期|p.RS3005.1-RS3005.14|共14页
  • 作者单位

    Department of Electrical and Computer Engineering, and Institute for Advanced Computer Studies, University of Maryland, College Park, Maryland, USA,Department of Physics and Center for Solar-Terrestrial Research, New Jersey Institute of Technology, Newark, New Jersey, USA,Department of Physics, New Jersey Institute of Technology, Newark, NJ 07102, USA;

    National Radio Astronomy Observatory, Green Bank, West Virginia, USA;

    Department of Astronomy, University of Maryland, College Park, Maryland, USA;

    Department of Electrical and Computer Engineering, and Institute for Advanced Computer Studies, University of Maryland, College Park, Maryland, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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