4.7 Article

End-to-End Simulation of 5G mmWave Networks

Journal

IEEE COMMUNICATIONS SURVEYS AND TUTORIALS
Volume 20, Issue 3, Pages 2237-2263

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/COMST.2018.2828880

Keywords

mmWave; 5G; cellular; channel; propagation; PHY; MAC; multi-connectivity; handover; simulation; ns-3

Funding

  1. U.S. Department of Commerce National Institute of Standards and Technology [70NANB17H166]
  2. NSF [1547332, 1564142, 1302336]

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Due to its potential for multi-gigabit and low latency wireless links, millimeter wave (mmWave) technology is expected to play a central role in 5th generation (5G) cellular systems. While there has been considerable progress in understanding the mm Wave physical layer, innovations will be required at all layers of the protocol stack, in both the access and the core network. Discrete-event network simulation is essential for end-to-end, cross-layer research and development. This paper provides a tutorial on a recently developed full-stack mm Wave module integrated into the widely used open-source ns-3 simulator. The module includes a number of detailed statistical channel models as well as the ability to incorporate real measurements or ray-tracing data. The physical and medium access control layers are modular and highly customizable, making it easy to integrate algorithms or compare orthogonal frequency division multiplexing numerologies, for example. The module is interfaced with the core network of the ns-3 Long Term Evolution (LTE) module for full-stack simulations of end-to-end connectivity, and advanced architectural features, such as dual-connectivity, are also available. To facilitate the understanding of the module, and verify its correct functioning, we provide several examples that show the performance of the custom mm Wave stack as well as custom congestion control algorithms designed specifically for efficient utilization of the mmWave channel.

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