An Open-Source Hardware-Aware Sub-Thz Radio-Stripe Simulator
Paper i proceeding, 2026

Sub-Terahertz radio-stripe and distributed MIMO architectures promise extreme spatial reuse and multi-GHz bandwidths, but the cascaded fiber front-haul and RF hardware impairments strongly shape end-to-end performance. This paper presents an open-source, configuration-driven simulator that models the full waveform-level signal chain from CP-OFDM baseband generation in the central unit, through measurement-parameterized polymer microwave fiber and coupler links, to booster/active Radio Units (RUs) with configurable nonlinearity, noise, in-phase and quadrature imbalance, and oscillator phase noise and carrier frequency offset. Wireless propagation is supported via lightweight deterministic and stochastic per-subcarrier channel models as well as site-specific ray-tracing datasets generated with a companion Sionna ray-tracer module. The simulator exports intermediate waveforms and system metrics (e.g., normalised mean square error, signal-to-noise-anddistortion ratio, bit error rate) to enable reproducible studies of impairment accumulation, calibration, and algorithmic choices such as RU selection and beam management.

hardware-aware simulation

distributed units

sub-THz

radio stripe

radio over polymer microwave fiber

Författare

Tijl Schepens

KU Leuven

Thomas Feys

KU Leuven

Thomas Eriksson

Chalmers, Elektroteknik, Kommunikation, Antenner och Optiska Nätverk

Gilles Callebaut

KU Leuven

2026 Joint European Conference on Networks and Communications and 6g Summit Eucnc 6g Summit 2026

444-451
9798331570194 (ISBN)

2026 Joint European Conference on Networks and Communications and 6G Summit, EuCNC/6G Summit 2026
Malaga, Spain,

Styrkeområden

Informations- och kommunikationsteknik

Ämneskategorier (SSIF 2025)

Annan elektroteknik och elektronik

Kommunikationssystem

Telekommunikation

DOI

10.1109/EuCNC/6GSummit68295.2026.11577284

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Senast uppdaterat

2026-07-20