Citation:
Garcia Armada, Ana; Chen Hu, Kun; Lopez Morales, Manuel Jose (2022). Optimum constellation for symbol-error-rate to PAPR ratio minimization in SWIPT. 95th Vehicular Technology Conference (VTC2022-Spring), Helsinki, Finland, 19-22 June 2022. IEEE, 2022, 5 p.
ISBN:
978-1-6654-8243-1
xmlui.dri2xhtml.METS-1.0.item-contributor-funder:
European Commission Ministerio de Economía y Competitividad (España)
Sponsor:
This work has received funding from the European Union Horizon 2020 research and innovation programme under the Marie Skłodowska-Curie ETN TeamUp5G, grant agreement No. 813391, and the Spanish National Project IRENE-EARTH (PID2020-115323RB-C33) (MINECO/AEI/FEDER, UE).
Project:
info:eu-repo/grantAgreement/EC/H2020/813391/TeamUp5G Gobierno de España. PID2020-115323RB-C33
Keywords:
Optimization
,
Spike-QAM
,
SWIPT
,
PAPR
,
SER
In this work, a spike-QAM, a regular QAM constellation where one to four of the elements with the largest amplitudes are placed further from the center, is proposed as the optimum constellation that minimizes the ratio of the symbolerror-rate (SER) to peak-to-In this work, a spike-QAM, a regular QAM constellation where one to four of the elements with the largest amplitudes are placed further from the center, is proposed as the optimum constellation that minimizes the ratio of the symbolerror-rate (SER) to peak-to-average-power-ratio (PAPR) in simultaneous-wireless-information-and-power-transfer (SWIPT) applications. This constellation is capable of maximizing the SER performance for a given design PAPR, or maximize the PAPR given a SER performance. The relationship between these parameters is defined. An approximation to the SER performance is given for the spike-QAM in AWGN channels and it is demonstrated to be valid via numerical simulations.[+][-]