Papers
Topics
Authors
Recent
Gemini 2.5 Flash
Gemini 2.5 Flash
139 tokens/sec
GPT-4o
7 tokens/sec
Gemini 2.5 Pro Pro
46 tokens/sec
o3 Pro
4 tokens/sec
GPT-4.1 Pro
38 tokens/sec
DeepSeek R1 via Azure Pro
28 tokens/sec
2000 character limit reached

Cell Switching in HAPS-Aided Networking: How the Obscurity of Traffic Loads Affects the Decision (2405.00387v1)

Published 1 May 2024 in cs.NI, cs.LG, cs.SY, and eess.SY

Abstract: This study aims to introduce the cell load estimation problem of cell switching approaches in cellular networks specially-presented in a high-altitude platform station (HAPS)-assisted network. The problem arises from the fact that the traffic loads of sleeping base stations for the next time slot cannot be perfectly known, but they can rather be estimated, and any estimation error could result in divergence from the optimal decision, which subsequently affects the performance of energy efficiency. The traffic loads of the sleeping base stations for the next time slot are required because the switching decisions are made proactively in the current time slot. Two different Q-learning algorithms are developed; one is full-scale, focusing solely on the performance, while the other one is lightweight and addresses the computational cost. Results confirm that the estimation error is capable of changing cell switching decisions that yields performance divergence compared to no-error scenarios. Moreover, the developed Q-learning algorithms perform well since an insignificant difference (i.e., 0.3%) is observed between them and the optimum algorithm.

Definition Search Book Streamline Icon: https://streamlinehq.com
References (15)
  1. “The ITU-R Framework for IMT-2030,” ITU-R Working Party 5D, International Telecommunication Union (ITU), Tech. Rep., July 2023. [Online]. Available: https://www.itu.int/en/ITU-R/study-groups/rsg5/rwp5d/imt-2030/Pages/default.aspx
  2. F. Ahmed, M. Naeem, W. Ejaz, M. Iqbal, A. Anpalagan, and M. Haneef, “Energy cooperation with sleep mechanism in renewable energy assisted cellular hetnets,” Wireless Personal Communications, vol. 116, pp. 105–124, 2021.
  3. X. Tan, K. Xiong, B. Gao, P. Fan, and K. B. Letaief, “Energy-efficient base station switching-off with guaranteed cooperative profit gain of mobile network operators,” IEEE Transactions on Green Communications and Networking, vol. 7, no. 3, pp. 1250–1266, 2023.
  4. A. E. Amine, J.-P. Chaiban, H. A. H. Hassan, P. Dini, L. Nuaymi, and R. Achkar, “Energy optimization with multi-sleeping control in 5G heterogeneous networks using reinforcement learning,” IEEE Transactions on Network and Service Management, vol. 19, no. 4, pp. 4310–4322, 2022.
  5. D. Renga and M. Meo, “Can high altitude platform stations make 6G sustainable?” IEEE Communications Magazine, vol. 60, no. 9, pp. 75–80, 2022.
  6. M. S. Alam, G. K. Kurt, H. Yanikomeroglu, P. Zhu, and N. D. Dao, “High altitude platform station based super macro base station constellations,” IEEE Communications Magazine, vol. 59, no. 1, pp. 103–109, 2021.
  7. G. B. Koç, B. Çiloğlu, M. Öztürk, and H. Yanikomeroglu, “HAPS-enabled sustainability provision in cellular networks through cell-switching,” in 2023 IEEE International Black Sea Conference on Communications and Networking (BlackSeaCom), 2023, pp. 294–299.
  8. T. Song, D. Lopez, M. Meo, N. Piovesan, and D. Renga, “High altitude platform stations: the new network energy efficiency enabler in the 6G era,” arXiv preprint arXiv:2307.00969, 2023.
  9. M. Salamatmoghadasi, A. Mehrabian, and H. Yanikomeroglu, “Energy sustainability in dense radio access networks via high altitude platform stations,” IEEE Networking Letters (Early Access), 2023.
  10. M. Ozturk, A. I. Abubakar, J. P. B. Nadas, R. N. B. Rais, S. Hussain, and M. A. Imran, “Energy optimization in ultra-dense radio access networks via traffic-aware cell switching,” IEEE Transactions on Green Communications and Networking, vol. 5, no. 2, pp. 832–845, 2021.
  11. “Study on New Radio (NR) to support non-terrestrial networks,” 3rd Generation Partnership Project (3GPP), TR 38.811, Sep. 2020.
  12. “Study on channel model for frequencies from 0.5 to 100 GHz,” 3rd Generation Partnership Project (3GPP), TS 38.901, May 2017.
  13. “Telecommunications - SMS, Call, Internet - MI,” Telecom Italia, 2015. [Online]. Available: https://doi.org/10.7910/DVN/EGZHFV
  14. G. Auer, V. Giannini, C. Desset, I. Godor, P. Skillermark, M. Olsson, M. A. Imran, D. Sabella, M. J. Gonzalez, O. Blume, and A. Fehske, “How much energy is needed to run a wireless network?” IEEE Wireless Communications, vol. 18, no. 5, pp. 40–49, Oct. 2011.
  15. G. B. Koç, B. Çiloğlu, M. Ozturk, and H. Yanikomeroglu, “A lightweight machine learning approach for delay-aware cell-switching in 6G haps networks,” to appear in IEEE International Conference on Communications (ICC) Workshops (arXiv preprint arXiv:2402.13096), 2024.
Citations (2)

Summary

We haven't generated a summary for this paper yet.

X Twitter Logo Streamline Icon: https://streamlinehq.com