Abstract
The increasing demand for power distribution systems in terms of control with nearly immediate response requires deploying a new type of user equipment (UE) that demands permanent connectivity. In NB-IoT systems, the traffic generated by such UEs may constitute a large part of the overall load. In this paper, we first propose a detailed two-dimensional Markov chain model to capture the system's behavior with the mixture of conventional stochastic and regular traffic types. To provide a computationally efficient solution, we then apply the state aggregation technique to reduce it to a one-dimensional model and develop approximations and associated numerical algorithms for assessing the mean delay when transmitting the considered traffic. Our results show that a single NB-IoT cell remains stable for up to 72×104 conventional UEs and 9×103 UEs demanding permanent connectivity. The presence of the latter UEs type has a linear effect on their delay, but affects conventional UEs more drastically. A delay bound of 10 s specified in ITU-R M.2410 is met for the conventional UEs, even under a high number of permanently connected UEs (103). However, the delay on the side of the latter UEs is violated even for 100 permanently connected UEs requiring redesigning the NB-IoT channel access mechanism or expanding resources.
| Original language | English |
|---|---|
| Pages (from-to) | 7332-7347 |
| Number of pages | 16 |
| Journal | IEEE Internet of Things Journal |
| Volume | 12 |
| Issue number | 6 |
| Early online date | 11 Nov 2024 |
| DOIs | |
| Publication status | Published - 2025 |
| Publication type | A1 Journal article-refereed |
Funding
Research described in this paper was financed by the Technology Agency of the Czech Republic under grant TN02000067, program National Competence Centre. The work of D. Moltchanov and Y. Koucheryavy has been supported by the Business Finland Ultra Scalable Wireless Access (USWA) project within the CELTIC-NEXT programme and \u201CMachine Learning Algorithms for Energy Efficient and QoS Aware Communications in Heterogeneous 6G mmWave/sub-THz Networks\u201D (ML6GThz) funded by the Academy of Finland.
| Funders | Funder number |
|---|---|
| USWA | |
| Business Finland Ultra Scalable Wireless Access | |
| Research Council of Finland | |
| National Competence Centre | |
| Technology Agency of the Czech Republic | TN02000067 |
Keywords
- 5G Mobile Networks
- Delay Performance
- Mixture of Traffic Types
- mMTC
- Narrowband IoT
Publication forum classification
- Publication forum level 2
ASJC Scopus subject areas
- Signal Processing
- Information Systems
- Hardware and Architecture
- Computer Science Applications
- Computer Networks and Communications
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