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Modelling Broadband Wireless Technology Coexistence in the Unlicensed Bands

机译:建模宽带无线技术共存在未经许可的乐队中

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Increasingly more unlicensed bands accommodate multiple broadband technologies, e.g. Wi-Fi and LTE in the 5 GHz band and Wi-Fi 6E and 5G NR-U in the new 6 GHz unlicensed band. In these bands, the technologies coexist primarily via distributed MAC spectrum sharing mechanisms, so it is crucial to evaluate their performance using the right tools that reliably and accurately model the coexisting schemes. CSMA and duty cycle are representative schemes in this context, but the few modelling tools that capture their coexistence performance are yet to be properly evaluated in terms of accuracy and computational efficiency. This paper is the first to compare three such modelling tools – stochastic geometry modelling (SGM), ns-3, and our hybrid model – which comprise different time granularities and abstraction levels for the MAC mechanisms. We compare both the accuracy of their estimated SINR and throughput versus ns-3 and their computational efficiency, for CSMA and duty cycle coexistence. Furthermore, we make recommendations pertinent to future broadband coexistence cases. Our results show that ns-3 captures important effects of the CSMA sensing time on the SINR, but its computation time may be prohibitive for modelling coexisting dense networks. This tool is thus useful primarily for studying dynamic MAC features in small to medium-sized coexisting deployments. SGM is the least accurate and also requires a long computation time, so we argue it is the least attractive approach to model coexisting CSMA and duty cycle technologies. Finally, our hybrid model yields the time-average per-link SINR with reasonable accuracy and the throughput with good accuracy and is at least two orders of magnitude faster to compute than SGM and ns-3, making it very well suited for extensive Monte Carlo simulations and large networks.
机译:越来越多的无牌频段适应多种宽带技术,例如,在新的6 GHz Unliced Band中的5 GHz带和Wi-Fi 6e和Wi-Fi 6e和5G NR-U中的Wi-Fi和LTE。在这些频段中,该技术主要通过分布式MAC频谱共享机制共存,因此使用合适的工具可以可靠准确地模拟共存方案,这是至关重要的。 CSMA和占空比是在这种情况下的代表性方案,但少数捕获其共存性能的建模工具尚未在准确性和计算效率方面进行适当地评估。本文是第一个比较三种这样的建模工具 - 随机几何建模(SGM),NS-3和我们的混合模型 - 包括不同时间粒度和MAC机制的抽象级别。我们对CSMA和占空比共存进行了估计的SINR和吞吐量和NS-3的准确性和吞吐量和计算效率。此外,我们提出了与未来宽带共存案件相关的建议。我们的结果表明,NS-3在SINR上捕获了CSMA感测时间的重要效果,但其计算时间可能是对建模密集的网络建模的。因此,该工具主要用于研究动态MAC功能,小到中型共存部署。 SGM是最不准确的,并且还需要长的计算时间,因此我们认为它是模型共存CSMA和占空比技术的最低有吸引力的方法。最后,我们的混合模型将时间平均每连杆SINR产生合理的准确性和吞吐量,具有良好的精度,并且比SGM和NS-3计算至少两个数量级,使其非常适合广泛的蒙特卡罗非常适合模拟和大型网络。

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