Stability Analysis of Device-to-Device Relay-Assisted Cellular Networks

Fuente: arXiv
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Hauptverfasser: Deb, Soubhik, Chaporkar, Prasanna, Karandikar, Abhay
Format: Preprint
Veröffentlicht: 2018
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author Deb, Soubhik
Chaporkar, Prasanna
Karandikar, Abhay
author_facet Deb, Soubhik
Chaporkar, Prasanna
Karandikar, Abhay
contents Motivated by increasing popularity of delay sensitive applications, we investigate the queue stability in device-to-device (D2D) relay-assisted cellular networks. In contrast to prior works on D2D relay-assisted cellular networks, we incorporate practical properties of these networks such as bursty packet arrivals, user mobility and relays generating their own traffic. Assuming network topology evolving in IID fashion, we first evaluate the system stability region to quantify its delay performance. Subsequently, we formulate a policy for joint resource allocation and power control under a more realistic mobility scenario of generalized reflected random walk. Also, the throughput optimality of this policy is investigated. Simulation results are provided to give better understanding of queue stability in the network.
format Preprint
id arxiv_https___arxiv_org_abs_1808_03881
institution arXiv
publishDate 2018
record_format arxiv
spellingShingle Stability Analysis of Device-to-Device Relay-Assisted Cellular Networks
Deb, Soubhik
Chaporkar, Prasanna
Karandikar, Abhay
Networking and Internet Architecture
Information Theory
Optimization and Control
Motivated by increasing popularity of delay sensitive applications, we investigate the queue stability in device-to-device (D2D) relay-assisted cellular networks. In contrast to prior works on D2D relay-assisted cellular networks, we incorporate practical properties of these networks such as bursty packet arrivals, user mobility and relays generating their own traffic. Assuming network topology evolving in IID fashion, we first evaluate the system stability region to quantify its delay performance. Subsequently, we formulate a policy for joint resource allocation and power control under a more realistic mobility scenario of generalized reflected random walk. Also, the throughput optimality of this policy is investigated. Simulation results are provided to give better understanding of queue stability in the network.
title Stability Analysis of Device-to-Device Relay-Assisted Cellular Networks
topic Networking and Internet Architecture
Information Theory
Optimization and Control
url https://arxiv.org/abs/1808.03881