Research on Properties of Devices for Shaping and Processing of Signals Based on Amplitude Modulation of Many Components

Author:

Horbatyi I. V.ORCID

Publisher

Allerton Press

Subject

Electrical and Electronic Engineering

Reference12 articles.

1. M. Ayat, S. Mirzakuchaki, A. Beheshti-Shirazi, “Design and implementation of high throughput, robust, parallel M-QAM demodulator in digital communication receivers,” IEEE Trans. Circuits Systems I: Regular Papers 63, No. 8, 1295 (2016). DOI: 10.1109/TCSI.2016.2589078.

2. M. Gangadharappa, R. Kapoor, H. Dixit, “An efficient hierarchical 16–QAM dynamic constellation to obtain high PSNR reconstructed images under varying channel conditions,” IET Commun. 10, No. 2, 139 (2016). DOI: 10.1049/iet–com.2015.0693.

3. M. Salmani, M. Nekuii, T. N. Davidson, “Semidefinite relaxation approaches to soft MIMO demodulation for higher order QAM signaling,” IEEE Trans. Signal Processing 65, No. 4, 960 (2017). DOI: 10.1109/TSP.2016. 2628342.

4. N. E. Elashkar, G. H. Ibrahim, M. Aboudina, H. A. H. Fahmy, A. H. Khalil, “All–passive memristor–based 8–QAM and BFSK demodulators using linear dopant drift model,” Proc. of 5th Int. Conf. on Electronic Devices, Systems and Applications, ICEDSA, 6–8 Dec. 2016, Ras Al Khaimah, United Arab Emirates (IEEE, 2016), pp. 1–4. DOI: 10.1109/ICEDSA.2016.7818542.

5. T. Liu, I. B. Djordjevic, “Signal constellation design for cross–phase modulation dominated channels,” IEEE Photonics J. 7, No. 4 (2015). DOI: 10.1109/JPHOT.2015.2453880.

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