milliProxy: a TCP Proxy Architecture for 5G mmWave Cellular Systems
December 07, 2017 Β· Declared Dead Β· π Asilomar Conference on Signals, Systems and Computers
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Authors
Michele Polese, Marco Mezzavilla, Menglei Zhang, Jing Zhu, Sundeep Rangan, Shivendra Panwar, Michele Zorzi
arXiv ID
1712.02700
Category
cs.NI: Networking & Internet
Cross-listed
cs.IT
Citations
33
Venue
Asilomar Conference on Signals, Systems and Computers
Last Checked
6 months ago
Abstract
TCP is the most widely used transport protocol in the internet. However, it offers suboptimal performance when operating over high bandwidth mmWave links. The main issues introduced by communications at such high frequencies are (i) the sensitivity to blockage and (ii) the high bandwidth fluctuations due to Line of Sight (LOS) to Non Line of Sight (NLOS) transitions and vice versa. In particular, TCP has an abstract view of the end-to-end connection, which does not properly capture the dynamics of the wireless mmWave link. The consequence is a suboptimal utilization of the available resources. In this paper we propose a TCP proxy architecture that improves the performance of TCP flows without any modification at the remote sender side. The proxy is installed in the Radio Access Network, and exploits information available at the gNB in order to maximize throughput and minimize latency.
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