Abstract
We evaluate hybrid analogue/digital transmission
based on adaptive modulation over point-to-point FR3-band
channels characterized by frequency-flat fading. In support of
low-complexity end-to-end fiber-wireless transmission, radio
transport is further assisted by an 8- to 12-fold optical frequency
multiplication for the purpose of carrier frequency synthesis,
thus ensuring mobile fronthaul operation in a fading-agnostic
low-frequency range and compatible with highly simplified
opto-electronics. We will experimentally demonstrate two FR3
over-the-air modes, including an orthogonally frequency division
multiplexed multi-carrier format and single-carrier binary
phase-shift keyed signaling, which are accomplished over optical
fronthaul budgets of more than 17 dB and in combination with
carrier frequency reclamation for full-duplex single-carrier
transmission using a paired FR3-band spectrum.
based on adaptive modulation over point-to-point FR3-band
channels characterized by frequency-flat fading. In support of
low-complexity end-to-end fiber-wireless transmission, radio
transport is further assisted by an 8- to 12-fold optical frequency
multiplication for the purpose of carrier frequency synthesis,
thus ensuring mobile fronthaul operation in a fading-agnostic
low-frequency range and compatible with highly simplified
opto-electronics. We will experimentally demonstrate two FR3
over-the-air modes, including an orthogonally frequency division
multiplexed multi-carrier format and single-carrier binary
phase-shift keyed signaling, which are accomplished over optical
fronthaul budgets of more than 17 dB and in combination with
carrier frequency reclamation for full-duplex single-carrier
transmission using a paired FR3-band spectrum.
| Originalsprache | Englisch |
|---|---|
| Seiten (von - bis) | 5531-5540 |
| Fachzeitschrift | Journal of Lightwave Technology |
| Volume | 44 |
| Issue | 13 |
| Publikationsstatus | Veröffentlicht - 2026 |
Research Field
- Quantum Key Distribution
- Molecular Diagnostics
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