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Evaluation of High-Level open-source tool-flows for rapid prototyping of Software Defined Radios

机译:评估用于软件无线电的快速原型制作的高级开源工具流程

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Advances in integrated circuit technology are enabling construction of increasingly more powerful architectures for Software Defined Radio (SDR) platforms. For instance multicores, multiprocessor System-on-Chip and FPGAs provide opportunities for innovative prototyping and increased programmability whereby more radio processing is done in the digital domain. But there are challenges with these technologies, especially difficulties of efficiently harnessing their capabilities in a productive manner. There are two general approaches that respond to this: 1) a shift from low-level to high-level design, using for example model-integrated computing; or 2) frameworks that usually require low-level expertise to adapt reusable code. In case 1 a portion of expertise is offloaded to tools - but effort is needed to learn the tool and debugging may be difficult. In case 2 the tool may be widely used but needs more low-level coding. This paper investigates the first approach and reflects on our more common practice of using coding frameworks. The methodology involved developing the same SDR processing operations with each tool. A system engineering approach was used whereby a generic Ideal High-Level SDR (IHS) tool flow was established as a baseline to compare the tools. We conclude with a summary of the qualitative capabilities of the tools.
机译:集成电路技术的进步使得能够为软件定义无线电(SDR)平台构建越来越强大的架构。例如,多核,多处理器片上系统和FPGA为创新的原型设计和增强的可编程性提供了机会,从而可以在数字域中完成更多的无线电处理。但是这些技术存在挑战,特别是难以有效地有效利用其功能的困难。有两种通用的方法可以对此做出响应:1)从低级设计到高级设计的转变,例如使用模型集成计算;或2)通常需要底层专业知识才能适应可重用代码的框架。在情况1中,一部分专业知识转移到了工具上-但是需要努力学习该工具,并且调试可能很困难。在情况2中,该工具可能被广泛使用,但需要更多的低级编码。本文研究了第一种方法,并反思了我们使用编码框架的更常见实践。该方法涉及使用每种工具开发相同的SDR处理操作。使用了系统工程方法,由此建立了通用的理想高级SDR(IHS)工具流程作为比较工具的基准。最后,我们对工具的定性功能进行了总结。

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