ALOHA Receivers: a Network Calculus Approach for Analyzing Coded Multiple Access with SIC

Fuente: arXiv
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Autori principali: Liu, Tzu-Hsuan, Yu, Che-Hao, Lin, Yi-Jheng, Chang, Cheng-Shang, Lee, Duan-Shin
Natura: Preprint
Pubblicazione: 2020
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author Liu, Tzu-Hsuan
Yu, Che-Hao
Lin, Yi-Jheng
Chang, Cheng-Shang
Lee, Duan-Shin
author_facet Liu, Tzu-Hsuan
Yu, Che-Hao
Lin, Yi-Jheng
Chang, Cheng-Shang
Lee, Duan-Shin
contents Motivated by the need to hide the complexity of the physical layer from performance analysis in a layer 2 protocol, a class of abstract receivers, called Poisson receivers, was recently proposed in [1] as a probabilistic framework for providing differentiated services in uplink transmissions in 5G networks. In this paper, we further propose a deterministic framework of ALOHA receivers that can be incorporated into the probabilistic framework of Poisson receivers for analyzing coded multiple access with successive interference cancellation. An ALOHA receiver is characterized by a success function of the number of packets that can be successfully received. Inspired by the theory of network calculus, we derive various algebraic properties for several operations on success functions and use them to prove various closure properties of ALOHA receivers, including (i) ALOHA receivers in tandem, (ii) cooperative ALOHA receivers, (iii) ALOHA receivers with traffic multiplexing, and (iv) ALOHA receivers with packet coding. By conducting extensive simulations, we show that our theoretical results match extremely well with the simulation results.
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id arxiv_https___arxiv_org_abs_2009_03145
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle ALOHA Receivers: a Network Calculus Approach for Analyzing Coded Multiple Access with SIC
Liu, Tzu-Hsuan
Yu, Che-Hao
Lin, Yi-Jheng
Chang, Cheng-Shang
Lee, Duan-Shin
Networking and Internet Architecture
Motivated by the need to hide the complexity of the physical layer from performance analysis in a layer 2 protocol, a class of abstract receivers, called Poisson receivers, was recently proposed in [1] as a probabilistic framework for providing differentiated services in uplink transmissions in 5G networks. In this paper, we further propose a deterministic framework of ALOHA receivers that can be incorporated into the probabilistic framework of Poisson receivers for analyzing coded multiple access with successive interference cancellation. An ALOHA receiver is characterized by a success function of the number of packets that can be successfully received. Inspired by the theory of network calculus, we derive various algebraic properties for several operations on success functions and use them to prove various closure properties of ALOHA receivers, including (i) ALOHA receivers in tandem, (ii) cooperative ALOHA receivers, (iii) ALOHA receivers with traffic multiplexing, and (iv) ALOHA receivers with packet coding. By conducting extensive simulations, we show that our theoretical results match extremely well with the simulation results.
title ALOHA Receivers: a Network Calculus Approach for Analyzing Coded Multiple Access with SIC
topic Networking and Internet Architecture
url https://arxiv.org/abs/2009.03145