Analysis of Nonlinear Distortions of FTN Signals Transmitted Through TWT Amplifier
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Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-030-97777-1_29
Reference15 articles.
1. Makarov, S.B., et al.: Optimizing the shape of Faster-Than-Nyquist (FTN) signals with the constraint on energy concentration in the occupied frequency bandwidth. IEEE Access 8, 130082–130093 (2020). https://doi.org/10.1109/ACCESS.2020.3009213
2. Li, Q., Gong, F.-K., Song, P.-Y., Li, G., Zhai, S.-H.: Joint channel estimation and precoding for faster-than-Nyquist signaling. IEEE Trans. Veh. Technol. 69(11), 13139–13147 (2020). https://doi.org/10.1109/TVT.2020.3021065
3. Gelgor, A., Gelgor, T.: New pulse shapes for partial response signaling to outperform faster-than-Nyquist signalling. In: 2019 IEEE International Conference on Electrical Engineering and Photonics (EExPolytech), St. Petersburg, Russia, pp. 144–148 (2019). https://doi.org/10.1109/EExPolytech.2019.8906884
4. Kang, W., Wu, Z.: Probabilistic shaping in faster-than-Nyquist system. In: 2020 IEEE Wireless Communications and Networking Conference Workshops (WCNCW), Seoul, Korea (South), pp. 1–6 (2020). https://doi.org/10.1109/WCNCW48565.2020.9124739
5. Smirnova, E.N., Makarov, S.B., Zavjalov, S.V., Polozhintsev, B.: Influence of the amplitude limitation of signals with the sin(x)/x envelope on the spectral and energy characteristics. In: 2020 IEEE International Conference on Electrical Engineering and Photonics (EExPolytech), pp. 164–167 (2020). https://doi.org/10.1109/EExPolytech50912.2020.9243855
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