2002Unpublished venueRequires access

Performance evaluation of multi-level four-dimensional Q/sup 2/PSK in Gaussian noise

B. Westra, D.J. van Wyk, J.E. Cilliers, L.P. Linde

Open publisher page 1 citations

Abstract

This paper considers the expansion of a well known four-dimensional quadrature-quadrature phase-shift keying (Q/sup 2/PSK) signalling scheme by introducing multiple amplitudes and/or phases per dimension to increase the effective data throughput rate and spectral efficiency of the former system. The performance of the new multi-level Q/sup 2/PSK modulation schemes, denoted by quadrature-quadrature amplitude-phase-shift keying (Q/sup 2/APSK), is compared to the original Q/sup 2/PSK modulation scheme, as well as to conventional two-dimensional QPSK and QAM modulation strategies under realistic bandlimiting conditions in the presence of additive white Gaussian noise. The performance comparisons are made in terms of spectral efficiency (or data throughput rate) versus symbol error probabilities. The results presented exhibit an expected signal to noise penalty for Q/sup 2/APSK compared to modulation schemes with two levels per dimension, such as QPSK and Q/sup 2/PSK, but with a considerable increase in spectral efficiency.

About this research paper

What this paper is about

This paper considers the expansion of a well known four-dimensional quadrature-quadrature phase-shift keying (Q/sup 2/PSK) signalling scheme by introducing multiple amplitudes and/or phases per dimension to increase the effective data throughput rate and spectral efficiency of the former system. The performance of the new multi-level Q/sup 2/PSK modulation schemes, denoted by quadrature-quadrature amplitude-phase-shift keying (Q/sup 2/APSK), is compared to the original Q/sup 2/PSK modulation scheme, as well as to conventional two-dimensional QPSK and QAM modulation strategies under realistic bandlimiting conditions in the presence of additive white Gaussian noise. The performance comparisons are made in terms of spectral efficiency (or data throughput rate) versus symbol error probabilities. The results presented exhibit an expected signal to noise penalty for Q/sup 2/APSK compared to modulation schemes with two levels per dimension, such as QPSK and Q/sup 2/PSK, but with a considerable increase in spectral efficiency.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

This paper considers the expansion of a well known four-dimensional quadrature-quadrature phase-shift keying (Q/sup 2/PSK) signalling scheme by introducing multiple amplitudes and/or phases per dimension to increase the effective data throughput rate and spectral efficiency of the former system. The performance of the new multi-level Q/sup 2/PSK modulation schemes, denoted by quadrature-quadrature amplitude-phase-shift keying (Q/sup 2/APSK), is compared to the original Q/sup 2/PSK modulation scheme, as well as to conventional two-dimensional QPSK and QAM modulation strategies under realistic bandlimiting conditions in the presence of additive white Gaussian noise. The performance comparisons are made in terms of spectral efficiency (or data throughput rate) versus symbol error probabilities. The results presented exhibit an expected signal to noise penalty for Q/sup 2/APSK compared to modulation schemes with two levels per dimension, such as QPSK and Q/sup 2/PSK, but with a considerable increase in spectral efficiency.

Key concepts: Phase-shift keying, Amplitude and phase-shift keying, Quadrature amplitude modulation, Additive white Gaussian noise, Spectral efficiency, QAM, Mathematics, Keying

Related papers

Back to paper searchBrowse research topicsOriginal source
Performance evaluation of multi-level four-dimensional Q/sup 2/PSK in Gaussian noise — Research Paper | ScholarLens