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Bibliographic Details
Main Authors: Haque, Md. Zahurul, Isla, Md. Rafiqul
Format: Preprint
Published: 2020
Subjects:
Online Access:https://arxiv.org/abs/2009.13216
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author Haque, Md. Zahurul
Isla, Md. Rafiqul
author_facet Haque, Md. Zahurul
Isla, Md. Rafiqul
contents Inrecent time a rapid increase in the number of smart devices and user applications have generated an intensity volume of data traffic from/to a cellular network. So the Long Term Evaluation(LTE)network is facing some issuesdifficulties ofthebase station and infrastructure in terms of upgrade and configuration becausethere is no concept of BSC (Base Station Controller) of 2G and RNC (Radio Network Controller) of 3G to control several BTS/NB. Only 4G (LTE) all the eNBs areinterconnected for traffic flow from UE (user equipment) to core switch. Determination of capacity of a linkof such a network is a challenging job since each node offers its own traffic andat the same time conveys traffic of other nodes.In this paper, we apply maximum flow algorithm including the binary search techniqueto solve the traffic flow of radio networkandinterconnected eNBs of the LTE network. The throughput of the LTE network shown graphically under the QPSK and 16-QAM
format Preprint
id arxiv_https___arxiv_org_abs_2009_13216
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Traffic model of LTE using maximum flow algorithm with binary search technique
Haque, Md. Zahurul
Isla, Md. Rafiqul
Multimedia
Inrecent time a rapid increase in the number of smart devices and user applications have generated an intensity volume of data traffic from/to a cellular network. So the Long Term Evaluation(LTE)network is facing some issuesdifficulties ofthebase station and infrastructure in terms of upgrade and configuration becausethere is no concept of BSC (Base Station Controller) of 2G and RNC (Radio Network Controller) of 3G to control several BTS/NB. Only 4G (LTE) all the eNBs areinterconnected for traffic flow from UE (user equipment) to core switch. Determination of capacity of a linkof such a network is a challenging job since each node offers its own traffic andat the same time conveys traffic of other nodes.In this paper, we apply maximum flow algorithm including the binary search techniqueto solve the traffic flow of radio networkandinterconnected eNBs of the LTE network. The throughput of the LTE network shown graphically under the QPSK and 16-QAM
title Traffic model of LTE using maximum flow algorithm with binary search technique
topic Multimedia
url https://arxiv.org/abs/2009.13216