Comparison of Theoretical and Real Throughput of PD-NOMA

封面

如何引用文章

全文:

开放存取 开放存取
受限制的访问 ##reader.subscriptionAccessGranted##
受限制的访问 订阅存取

详细

In this paper, we compare theoretical and real throughput in PD-NOMA systems. The theoretical throughput was obtained using ideal signal structures according to Shannon’s theorem while the practical one was obtained with allowance for the use of a bank of signal-code structures from the 3GPP LTE standard. An approach for estimating the real throughput of PD-NOMA is described. The error value between the theoretical and real throughput of PD-NOMA is determined.

作者简介

Y. Kryukov

Tomsk State University of Control Systems and Radioelectronics

Email: kryukov.tusur@gmail.com
40 Lenina Prospect, Tomsk, 634034 Russia

D. Pokamestov

Tomsk State University of Control Systems and Radioelectronics

Email: kryukov.tusur@gmail.com
40 Lenina Prospect, Tomsk, 634034 Russia

E. Rogozhnikov

Tomsk State University of Control Systems and Radioelectronics

编辑信件的主要联系方式.
Email: kryukov.tusur@gmail.com
40 Lenina Prospect, Tomsk, 634034 Russia

参考

  1. Cover T. // IEEE Trans. 1972. V. IF-18. № 1. P. 2.
  2. Benjebbour A., Saito Y., Kishiyama Y. et al. // Proc. 2013 IEEE Int. Symp. on Intelligent Signal Processing and Communication Systems. Naha. 12–15 Nov. N.Y.: IEEE, 2013. P. 770.
  3. Liu X., Wang J., Zhao N. et al. // IEEE Wireless Commun. Lett. 2019. V. 8. № 3. P. 965.
  4. Zhang J., Tao X., Wu H. et al. // IEEE Internet of Things J. 2020. V. 7. № 7. P. 6369.
  5. Ding Z., Schober R., Poor H. // IEEE Commun. Lett. 2020. V. 24. № 11. P. 2373.
  6. Wang J., Li Y., Ji C. et al. // IEEE Trans. 2020. V. COM-68. № 4. P. 2293.
  7. Dai L., Wang B., Ding Z. et al. // IEEE Commun. Surveys & Tutorials. 2018. V. 20. № 3. P. 2294.
  8. Saito Y., Benjebbour A., Kishiyama Y., Nakamura T. // Proc. 2013 IEEE 24th Annual Int. Symp. on Personal, Indoor and Mobile Radio Commun. (PIMRC). London. 8–11 Sept. N.Y.: IEEE, 2013. P. 611.
  9. Ding Z., Lei X., Karagiannidis K. et al. // IEEE J. Selected Areas Commun. 2017. V. 35. № 10. P. 2181.
  10. Benjebbour A., Saito K., Li A. et al. // 2015 Int. Conf. on Wireless Networks and Mobile Commun.(WINCOM). Marrakesh. 20–23 Oct. N.Y.: IEEE, 2015. Article № 7381343.
  11. Liu C.H., Liang D.C. // IEEE Trans. 2018. V. WC-17. № 5. P. 3524.
  12. Higuchi K., Benjebbour A. // IEICE Trans. 2015. V. COM-98. № 3. P 403.
  13. Kryukov Y., Pokamestov D., Abenov R. et al. // J. Phys: Conf. Series. 2021. V. 2134. № 1. P. 12023.
  14. Abdel Moniem M., Gasser S., El-Mahallawy M. et al. // Applied Sciences. 2019. V. 9. № 15. P. 3022.
  15. Kim S., Kim H., Hong D. // Proc. 2018 29th Annual Int. Symp. on Personal, Indoor and Mobile Radio Commun. (RIMRC). Bologna. 9–12 Sept. N.Y.: IEEE, 2018. Article № 8580995.
  16. Hsieh H.-Y., Yang M.-J., Wang C.-H. // Proc. 2016 IEEE 27th Annual Int. Symp. on Personal, Indoor, and Mobile Radio Commun. (RIMRC). Valencia. 4–8 Sept. N.Y.: IEEE, 2016. Article № 7794796.

补充文件

附件文件
动作
1. JATS XML
2.

下载 (54KB)
3.

下载 (1MB)
4.

下载 (131KB)

版权所有 © Я.В. Крюков, Д.А. Покаместов, Е.В. Рогожников, 2022