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Creating RF Scenarios for Large-scale, Real-time Wireless Channel Emulators

机译:为大型实时无线通道仿真器创建RF方案

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Recent years have seen the introduction of large-scale platforms for experimental wireless research. These platforms, which include testbeds like those of the PAWR program and emulators like Colosseum, allow researchers to prototype and test their solutions in a sound yet realistic wireless environment before actual deployment. Emulators, in particular, enable wireless experiments that are not site-specific as those on real testbeds. Researchers can choose among different radio frequency (RF) scenarios for real-time emulation of a vast variety of different situations, with different number of users, RF bandwidth, antenna counts, hardware requirements, etc. Although very powerful, in that they can emulate virtually any real-world deployment, emulated scenarios are only as useful as how accurately they can reproduce the targeted wireless channel and environment. Achieving emulation accuracy is particularly challenging, especially for experiments at scale for which emulators require considerable amounts of computational resources. In this paper, we propose a framework to create RF scenarios for emulators like Colosseum starting from rich forms of input, like those obtained by measurements through radio equipment or via software (e.g., ray-tracers and electromagnetic field solvers). Our framework optimally scales down the large set of RF data in input to the fewer parameters allowed by the emulator by using efficient clustering techniques and channel impulse response re-sampling. We showcase our method by generating wireless scenarios for the Colosseum network emulator by using Remcom's Wireless InSite, a commercial-grade ray-tracer that produces key characteristics of the wireless channel. Examples are provided for line-of-sight and non-line-of-sight scenarios on portions of the Northeastern University main campus
机译:近年来已经看到了对实验无线研究的大规模平台引入。这些平台包括像罗马斗兽场这样的PAWR程序和仿真器等测试平台,允许研究人员在实际部署之前在声音但实际的无线环境中进行原型和测试它们的解决方案。特别是仿真器能够使无线实验能够与实际测试平台上的网站特有实验。研究人员可以选择不同的射频(RF)方案,用于实时模拟各种不同情况,具有不同数量的用户,RF带宽,天线计数,硬件要求等虽然非常强大,但它们可以模拟实际上,任何真实的部署,模拟场景都只有与他们如何重现目标无线信道和环境的有用。实现仿真精度尤其具有挑战性,特别是在规模的实验中,仿真器需要相当大量的计算资源。在本文中,我们提出了一个框架,用于从丰富的输入开始创建像罗马斗兽场的仿真器的RF场景,如通过无线电设备或通过软件(例如,射线示踪剂和电磁场溶剂)通过测量而获得的框架。我们的框架通过使用有效的聚类技术和频道脉冲响应重新采样,最佳地将输入的大量RF数据缩小到输入到仿真器允许的参数较少。我们通过使用Remcom的无线Insite(一种生产无线信道的关键特性的商业级射线示踪剂)为罗马孔网络仿真器生成无线方案来展示我们的方法。在东北大学主要校园的一部分上提供了用于视线和非关像线情景的示例

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