A novel LTE scheduling algorithm for green technology in smart grid.

Smart grid (SG) application is being used nowadays to meet the demand of increasing power consumption. SG application is considered as a perfect solution for combining renewable energy resources and electrical grid by means of creating a bidirectional communication channel between the two systems. I...

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Main Authors: Mohammad Nour Hindia, Ahmed Wasif Reza, Kamarul Ariffin Noordin, Muhammad Hasibur Rashid Chayon
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4382332?pdf=render
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spelling doaj-22414fa709224bf88fdfbe70299d14ba2020-11-25T01:21:39ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01104e012190110.1371/journal.pone.0121901A novel LTE scheduling algorithm for green technology in smart grid.Mohammad Nour HindiaAhmed Wasif RezaKamarul Ariffin NoordinMuhammad Hasibur Rashid ChayonSmart grid (SG) application is being used nowadays to meet the demand of increasing power consumption. SG application is considered as a perfect solution for combining renewable energy resources and electrical grid by means of creating a bidirectional communication channel between the two systems. In this paper, three SG applications applicable to renewable energy system, namely, distribution automation (DA), distributed energy system-storage (DER) and electrical vehicle (EV), are investigated in order to study their suitability in Long Term Evolution (LTE) network. To compensate the weakness in the existing scheduling algorithms, a novel bandwidth estimation and allocation technique and a new scheduling algorithm are proposed. The technique allocates available network resources based on application's priority, whereas the algorithm makes scheduling decision based on dynamic weighting factors of multi-criteria to satisfy the demands (delay, past average throughput and instantaneous transmission rate) of quality of service. Finally, the simulation results demonstrate that the proposed mechanism achieves higher throughput, lower delay and lower packet loss rate for DA and DER as well as provide a degree of service for EV. In terms of fairness, the proposed algorithm shows 3%, 7 % and 9% better performance compared to exponential rule (EXP-Rule), modified-largest weighted delay first (M-LWDF) and exponential/PF (EXP/PF), respectively.http://europepmc.org/articles/PMC4382332?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Mohammad Nour Hindia
Ahmed Wasif Reza
Kamarul Ariffin Noordin
Muhammad Hasibur Rashid Chayon
spellingShingle Mohammad Nour Hindia
Ahmed Wasif Reza
Kamarul Ariffin Noordin
Muhammad Hasibur Rashid Chayon
A novel LTE scheduling algorithm for green technology in smart grid.
PLoS ONE
author_facet Mohammad Nour Hindia
Ahmed Wasif Reza
Kamarul Ariffin Noordin
Muhammad Hasibur Rashid Chayon
author_sort Mohammad Nour Hindia
title A novel LTE scheduling algorithm for green technology in smart grid.
title_short A novel LTE scheduling algorithm for green technology in smart grid.
title_full A novel LTE scheduling algorithm for green technology in smart grid.
title_fullStr A novel LTE scheduling algorithm for green technology in smart grid.
title_full_unstemmed A novel LTE scheduling algorithm for green technology in smart grid.
title_sort novel lte scheduling algorithm for green technology in smart grid.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Smart grid (SG) application is being used nowadays to meet the demand of increasing power consumption. SG application is considered as a perfect solution for combining renewable energy resources and electrical grid by means of creating a bidirectional communication channel between the two systems. In this paper, three SG applications applicable to renewable energy system, namely, distribution automation (DA), distributed energy system-storage (DER) and electrical vehicle (EV), are investigated in order to study their suitability in Long Term Evolution (LTE) network. To compensate the weakness in the existing scheduling algorithms, a novel bandwidth estimation and allocation technique and a new scheduling algorithm are proposed. The technique allocates available network resources based on application's priority, whereas the algorithm makes scheduling decision based on dynamic weighting factors of multi-criteria to satisfy the demands (delay, past average throughput and instantaneous transmission rate) of quality of service. Finally, the simulation results demonstrate that the proposed mechanism achieves higher throughput, lower delay and lower packet loss rate for DA and DER as well as provide a degree of service for EV. In terms of fairness, the proposed algorithm shows 3%, 7 % and 9% better performance compared to exponential rule (EXP-Rule), modified-largest weighted delay first (M-LWDF) and exponential/PF (EXP/PF), respectively.
url http://europepmc.org/articles/PMC4382332?pdf=render
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