Literature DB >> 35223336

On the Coexistence of LTE-LAA in the Unlicensed Band: Modeling and Performance Analysis.

Naim Bitar1, Mohamad Omar Al Kalaa2, Seth J Seidman2, Hazem H Refai1.   

Abstract

Long term evolution (LTE) technology leveraging the unlicensed band is anticipated to provide a solution for the challenges stemming from the rapid growth of mobile wireless services, the scarcity of available licensed spectrum, and the expected significant increase in mobile data traffic. Ensuring fair operation in terms of spectrum sharing with current unlicensed spectrum incumbents is a key concern relative to the success and viability of Unlicensed LTE (U-LTE). This paper addresses the problem of modeling and evaluating the coexistence of LTE license-assisted-access in the unlicensed band. The paper presents a novel analytical model using Markov chain to accurately model the LAA listen-before-talk scheme, as specified in the final technical specification 36.213 of 3GPP release 13 and 14. Furthermore, model validation is demonstrated through numerical and simulation results comparison. Model performance evaluation is examined and contrasted with IEEE 802.11 distributed coordination function. Finally, a comprehensive coexistence performance analysis is conducted for both homogeneous and heterogeneous network scenarios and coexistence results are presented and discussed herein.

Entities:  

Keywords:  LBT; LTE unlicensed; LTE-LAA; LTE-U; LWA; Markov chain; multefire

Year:  2018        PMID: 35223336      PMCID: PMC8867443          DOI: 10.1109/access.2018.2870757

Source DB:  PubMed          Journal:  IEEE Access        ISSN: 2169-3536            Impact factor:   3.367


  4 in total

1.  5 GHz Band LTE-LAA Signal Selection for Use as the Unintended Signal in ANSI C63.27 Wireless Coexistence Testing.

Authors:  Mohamad Omar Al Kalaa; Seth J Seidman
Journal:  IEEE Trans Electromagn Compat       Date:  2020-08-01       Impact factor: 2.006

2.  5G NR-U: Homogeneous Coexistence Analysis.

Authors:  Siraj Muhammad; Hazem H Refai; Mohamad Omar Al Kalaa
Journal:  IEEE Glob Commun Conf       Date:  2021-01-25

3.  Wireless Coexistence Testing in the 5 GHz Band with LTE-LAA Signals.

Authors:  Mohamad Omar Al Kalaa; Seth J Seidman
Journal:  IEEE Int Symp Electromagn Compat       Date:  2019-09-05

4.  Service Level Agreements for 5G and Beyond: Overview, Challenges and Enablers of 5G-Healthcare Systems.

Authors:  Haneya Naeem Qureshi; Marvin Manalastas; Syed Muhammad Asad Zaidi; Ali Imran; Mohamad Omar Al Kalaa
Journal:  IEEE Access       Date:  2021-01-05       Impact factor: 3.367

  4 in total

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