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Updated: Oct 8, 2025

Measurement of Scattering Nonlinearities from a Single Plasmonic Nanoparticle
Published on: January 3, 2016
Comparative Analytical Study of SCMA Detection Methods for PA Nonlinearity Mitigation.
Elie Sfeir1, Rangeet Mitra1, Georges Kaddoum1
1LaCIME, Génie Electrique, École De Technologie Supérieure, Montreal, QC H3C1K3, Canada.
Sparse Code Multiple Access (SCMA) systems suffer performance degradation from nonlinear amplifiers. This study analytically compares Bussgang-based and RKHS-based detectors, finding RKHS offers a lower error floor for improved bit error rate (BER) performance.
Area of Science:
- Wireless communication systems
- Signal processing
- Information theory
Background:
- Non-orthogonal Multiple Access (NOMA) enables multiplexing users over limited resources.
- Sparse Code Multiple Access (SCMA) offers coding gain and optimal detection via Message Passing Algorithm (MPA).
- Nonlinear power amplifiers degrade SCMA bit error rate (BER) performance.
Purpose of the Study:
- To analytically investigate the error-floor performance of Bussgang-based MPA detectors in SCMA systems.
- To compare the error-floor performance of Bussgang-based MPA with a Reproducing Kernel Hilbert Space (RKHS)-based MPA using Random Fourier Features (RFF).
- To quantify the BER performance gap between the two detector types.
Main Methods:
- Analytical derivation of the error-floor for Bussgang-based MPA.
- Implementation and simulation of RKHS-based MPA using RFF.
- Comparative analysis of BER performance through simulations and analytical results.
Main Results:
- Bussgang-based MPA achieves a higher error floor compared to RKHS-based MPA.
- RKHS-based MPA demonstrates superior BER performance, mitigating nonlinear amplifier effects more effectively.
- The performance gap and error floor are analytically quantified and validated by simulations.
Conclusions:
- RKHS-based MPA, particularly with RFF, is a more effective solution for mitigating nonlinear amplifier-induced degradation in SCMA systems.
- While computationally simpler, Bussgang-based MPA exhibits a higher BER floor, limiting its applicability in performance-critical scenarios.
- The study provides crucial analytical insights for designing robust SCMA systems operating under nonlinear conditions.
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