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Colosseum as a Digital Twin: Bridging Real-World Experimentation and Wireless Network Emulation

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arxiv 2303.17063 v6 pith:UKJXE2EJ submitted 2023-03-29 cs.NI eess.SP

classification cs.NIeess.SP
keywords wirelessemulationcolosseumdigitalnetworkconceptexperimentalnetworks
verification ladder T0 review T1 audit T2 compute T3 formal
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Wireless network emulators are being increasingly used for developing and evaluating new solutions for Next Generation (NextG) wireless networks. However, the reliability of the solutions tested on emulation platforms heavily depends on the precision of the emulation process, model design, and parameter settings. To address, obviate, or minimize the impact of errors of emulation models, in this work, we apply the concept of Digital Twin (DT) to large-scale wireless systems. Specifically, we demonstrate the use of Colosseum, the world's largest wireless network emulator with hardware-in-the-loop, as a DT for NextG experimental wireless research at scale. As proof of concept, we leverage the Channel emulation scenario generator and Sounder Toolchain (CaST) to create the DT of a publicly available over-the-air indoor testbed for sub-6 GHz research, namely, Arena. Then, we validate the Colosseum DT through experimental campaigns on emulated wireless environments, including scenarios concerning cellular networks and jamming of Wi-Fi nodes, on both the real and digital systems. Our experiments show that the DT is able to provide a faithful representation of the real-world setup, obtaining an average similarity of up to 0.987 in throughput and 0.982 in Signal to Interference plus Noise Ratio (SINR).

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Driving Innovation in 6G Wireless Technologies: The OpenAirInterface Approach

    cs.NI 2024-12 unverdicted novelty 3.0 of 10

    The paper describes the OpenAirInterface open-source 5G/6G platform, its performance on selected testbeds, and argues that such open-source systems will drive 6G research.

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