ns-3 Implementation of the 3GPP MIMO Channel Model for Frequency Spectrum above 6 GHz

Menglei Zhang, Michele Polese, M. Mezzavilla, S. Rangan, M. Zorzi
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引用次数: 68

Abstract

Communications at mmWave frequencies will be a key enabler for the next generation of cellular networks, due to the multi-Gbps rate that can be achieved. However, before this technology can be widely adopted, there are still several problems that must be solved, primarily associated with the interplay between the variability of mmWave links and the complexity of mobile networks. An end-to-end network simulator represents a great tool to assess the performance of any proposed solution to meet the stringent 5G requirements. Given the criticality of channel propagation characteristics at higher frequencies, it is of fundamental importance to properly simulate detailed propagation behaviors. Towards this goal, in this paper we present our implementation of the 3GPP channel model for the 6-100 GHz band for the ns--3 end-to-end 5G mmWave module, and detail its associated MIMO beamforming architecture.
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ns-3 6ghz以上频谱3GPP MIMO信道模型的实现
由于可以实现数gbps的速率,毫米波频率的通信将成为下一代蜂窝网络的关键推动因素。然而,在这项技术被广泛采用之前,仍有几个问题必须解决,主要与毫米波链路的可变性和移动网络的复杂性之间的相互作用有关。端到端网络模拟器是评估任何拟议解决方案的性能以满足严格的5G要求的绝佳工具。考虑到高频信道传播特性的临界性,正确模拟详细的传播行为具有重要意义。为了实现这一目标,在本文中,我们介绍了用于ns- 3端到端5G毫米波模块的6-100 GHz频段的3GPP信道模型的实现,并详细介绍了其相关的MIMO波束形成架构。
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