Implementation of 802.11ax and cell-free massive MIMO scenario for 6G wireless network analysis extending OMNeT++ simulator

Vincenzo Inzillo, Alfonso Ariza Quintana
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Abstract

In an era where ubiquitous connectivity and escalating data demands are altering the landscape of wireless communications, our paper proposes a pioneering enhancement for the OMNeT++ simulator to support the advanced features of IEEE 802.11ax high efficiency (HE) alongside cell-free massive multiple-input multiple-output (MIMO) systems. Traditional wireless networks face daunting challenges in sustaining elevated quality of service (QoS), primarily due to fluctuating user densities and signal quality. Cell-free massive MIMO serves as a compelling answer to this predicament by decentralizing the cellular architecture. It eradicates conventional cell boundaries, furnishing uniform QoS regardless of user locations. However, these advancements come at the expense of complex backhaul networks and articulated joint signal processing. The 802.11ax standard, touted for its robustness and efficiency, remains underexplored in this new paradigm. Our research not only dissects the architectural elements and constraints of both 802.11ax and cell-free massive MIMO but also elaborates on the adaptations required to extend OMNeT++ functionalities for these technologies. By doing so, we bridge a crucial gap, enabling the simulator to provide a more precise, detailed, and scalable evaluation of emerging 6G scenarios and directional communications also taking into account the impact of the most known routing protocols such as dynamic source routing (DSR), ad hoc on-demand distance vector routing (AODV), optimized link state routing (OLSR), and dynamic mobile ad hoc network on-demand (DYMO) that were selected for this comparative study. The proposed extensions promise to revolutionize network simulations and lay the foundation for in-depth analyses of wireless systems in complex and dynamic environments. Through extensive simulations, our study demonstrates that cell-free massive MIMO configurations significantly improve network throughput in high-density mobile ad hoc network (MANET) environments, with results indicating an average throughput gain of up to 30% compared with non-cell-free configurations. This improvement highlights the efficacy of cell-free massive MIMO to take advantage of the spatial and frequency multiplexing capabilities inherent in the 802.11ax standard, making it a promising solution for future wireless systems in densely populated areas.
为 6G 无线网络分析实现 802.11ax 和无小区大规模 MIMO 场景,扩展 OMNeT++ 模拟器
在无处不在的连接和不断升级的数据需求正在改变无线通信格局的时代,我们的论文为 OMNeT++ 模拟器提出了一个开创性的增强功能,以支持 IEEE 802.11ax 高效(HE)以及无小区大规模多输入多输出(MIMO)系统的先进功能。传统无线网络在维持较高的服务质量(QoS)方面面临严峻挑战,主要原因是用户密度和信号质量的波动。无蜂窝大规模多输入多输出(MIMO)系统通过分散蜂窝架构,有力地解决了这一难题。它消除了传统的小区界限,无论用户位于何处,都能提供统一的服务质量。然而,这些进步是以复杂的回程网络和衔接的联合信号处理为代价的。802.11ax 标准因其稳健性和高效性而备受推崇,但在这一新模式中仍未得到充分开发。我们的研究不仅剖析了 802.11ax 和无小区大规模多输入多输出(massive MIMO)的架构要素和限制因素,还详细阐述了为这些技术扩展 OMNeT++ 功能所需的调整。通过这样做,我们弥补了一个重要的差距,使模拟器能够对新兴的 6G 场景和定向通信进行更精确、详细和可扩展的评估,同时考虑到最知名的路由协议的影响,如动态源路由(DSR)、按需特设距离矢量路由(AODV)、优化链路状态路由(OLSR)和按需动态移动特设网络(DYMO),这些都被选作本次比较研究的内容。所提出的扩展有望彻底改变网络模拟,并为深入分析复杂动态环境中的无线系统奠定基础。通过大量仿真,我们的研究表明,无蜂窝大规模多输入多输出(massive MIMO)配置可显著提高高密度移动特设网络(MANET)环境中的网络吞吐量,结果表明,与无蜂窝配置相比,平均吞吐量增益高达 30%。这一改进凸显了无蜂窝大规模多输入多输出(massive MIMO)利用 802.11ax 标准固有的空间和频率多路复用能力的功效,使其成为人口稠密地区未来无线系统的一个前景广阔的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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