Coordinated Dynamic Spectrum Management of LTE-U and Wi-Fi Networks
arXiv:1507.06881 · doi:10.1109/DySPAN.2015.7343904
Abstract
This paper investigates the co-existence of Wi-Fi and LTE in emerging unlicensed frequency bands which are intended to accommodate multiple radio access technologies. Wi-Fi and LTE are the two most prominent access technologies being deployed today, motivating further study of the inter-system interference arising in such shared spectrum scenarios as well as possible techniques for enabling improved co-existence. An analytical model for evaluating the baseline performance of co-existing Wi-Fi and LTE is developed and used to obtain baseline performance measures. The results show that both Wi-Fi and LTE networks cause significant interference to each other and that the degradation is dependent on a number of factors such as power levels and physical topology. The model-based results are partially validated via experimental evaluations using USRP based SDR platforms on the ORBIT testbed. Further, inter-network coordination with logically centralized radio resource management across Wi-Fi and LTE systems is proposed as a possible solution for improved co-existence. Numerical results are presented showing significant gains in both Wi-Fi and LTE performance with the proposed inter-network coordination approach.
Accepted paper at IEEE DySPAN 2015
Cited by in corpus (5)
- Modeling and Analyzing the Coexistence of Wi-Fi and LTE in Unlicensed Spectrum
- Inter-Technology Coexistence in a Spectrum Commons: A Case Study of Wi-Fi and LTE in the 5 GHz Unlicensed Band
- Survey of Spectrum Sharing for Inter-Technology Coexistence
- Coordinated Allocation of Radio Resources to Wi-Fi and Cellular Technologies in Shared Unlicensed Frequencies
- Holistic Small Cell Traffic Balancing across Licensed and Unlicensed Bands