使用WISCANet快速实现和演示无线电应用

J. Holtom, Gerard Gubash, A. Herschfelt, O. Ma, Wylie Standage-Beier, Hanguang Yu, D. Bliss
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引用次数: 2

摘要

实现新的射频应用传统上需要大量的时间和专业知识,即使是相对简单的算法。软件定义无线电(sdr)最近使射频应用的快速实施和验证成为可能,而无需专门的硬件或高级编程技能。我们通过构建WISCANet——一个具有专门控制软件的商业sdr的多样化网络,进一步促进了这种快速的应用开发。WISCANet自动配置这些sdr,并以最少的用户输入控制发送和接收事件。这允许用户通过在软件中简单地定义基带处理链来快速实现无线射频应用。此外,WISCANet模拟实时操作,允许用户测试实时应用程序,而没有通常的复杂性,如处理速度或硬件限制。在本文中,我们介绍了WISCA软件定义无线网络(SDR-N)的最新改进。这些改进包括可配置和灵活的多通道相位相干性以及对MATLAB和Python应用程序的支持。这个软件的开源版本可以在GitHub上找到:https://github.com/WISCA
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapid Implementation and Demonstration of Radio Applications Using WISCANet
Implementing new RF applications has traditionally required significant time and expertise, even for relatively simple algorithms. Software-defined radios (SDRs) have recently enabled rapid implementation and validation of RF applications without specialized hardware or advanced programming skills. We further facilitate this rapid application development by constructing WISCANet – a diverse network of commercial SDRs with specialized control software. WISCANet automatically configures these SDRs and controls transmit and receive events with minimal user input. This allows users to rapidly implement over-the-air RF applications by simply defining the baseband processing chain in software. Furthermore, WISCANet emulates real-time operations, which allows users to test real-time applications without the usual complications such as processing speed or hardware limitations. In this paper, we present recent improvements to the WISCA Software-Defined Radio Network (SDR-N). These improvements include configurable and flexible multi-channel phase coherence and support for both MATLAB and Python applications. The open source release of this software may be found on GitHub at: https://github.com/WISCA
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