activity
20172021
most citedEfficient Fast-Convolution-Based Waveform Processing for 5G Physical Layer

75 citations · 75 across the 2 of their papers we have counts for

collaborators

8 papers

eess.SP2021

Phase Noise Resilient Three-Level Continuous-Phase Modulation for DFT-Spread OFDM

Markku Renfors, Ismael Peruga Nasarre, Toni Levanen +2

A novel OFDM-based waveform with low peak-to-average power ratio (PAPR) and high robustness against phase noise (PN) is presented. It follows the discrete Fourier transform spread…

eess.SP2019

Mobile Communications Beyond 52.6 GHz: Waveforms, Numerology, and Phase Noise Challenge

Toni Levanen, Oskari Tervo, Kari Pajukoski +2

In this article, the first considerations for the 5G New Radio (NR) physical layer evolution to support beyond 52.6GHz communications are provided. In addition, the performance of…

eess.SP2019

PAPR Reduction with Mixed-Numerology OFDM

Selahattin Gökceli, Toni Levanen, Juha Yli-Kaakinen +3

High peak-to-average power ratio (PAPR) is a critical problem in orthogonal frequency-division multiplexing (OFDM). The fifth-generation New Radio (5G NR) facilitates the utilizati…

eess.SP2019

Frequency-Selective PAPR Reduction for OFDM

Selahattin Gökceli, Toni Levanen, Taneli Riihonen +2

We study the peak-to-average power ratio (PAPR) problem in orthogonal frequency-division multiplexing (OFDM) systems. In conventional clipping and filtering based PAPR reduction te…

cs.IT2019

Generalized Fast-Convolution-based Filtered-OFDM: Techniques and Application to 5G New Radio

Juha Yli-Kaakinen, Toni Levanen, Arto Palin +2

This paper proposes a generalized model and methods for fast-convolution (FC)-based waveform generation and processing with specific applications to fifth generation new radio (5G-…

eess.SP2018

Transparent Tx and Rx Waveform Processing for 5G New Radio Mobile Communications

Toni Levanen, Juho Pirskanen, Kari Pajukoski +2

Several different waveform processing techniques have been studied and proposed for the 5G new radio (NR) physical layer, to support new mixed numerology and asynchronous services.…