COMMUNITY BASED HOME ENERGY MANAGEMENT SYSTEM

In a Smart Grid (SG) scenario, domestic consumers can gain cost reduction benefit by scheduling their Appliance Activation Time (AAT) towards the slots of low charge. Minimization in cost is essential in Home Energy Management Systems (HEMS) to induce consumers acceptance for power scheduling to acc...

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Main Authors: Muhammad Adnan Aziz, Ijaz Mansoor Qureshi, Tanweer Ahmed Cheema, Engr. Akram Rashid
Format: Article
Language:English
Published: IIUM Press, International Islamic University Malaysia 2017-05-01
Series:International Islamic University Malaysia Engineering Journal
Online Access:http://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/657
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spelling doaj-48e6350e485b4b1ea3f2572c625833f82020-11-25T03:42:52ZengIIUM Press, International Islamic University MalaysiaInternational Islamic University Malaysia Engineering Journal1511-788X2289-78602017-05-0118110.31436/iiumej.v18i1.657COMMUNITY BASED HOME ENERGY MANAGEMENT SYSTEMMuhammad Adnan Aziz0Ijaz Mansoor Qureshi1Tanweer Ahmed Cheema2Engr. Akram Rashid3Isra University, Islamabad Campus, PakistanAir University, IslamabadIsra University, Islamabad Campus, PakistanAir University, IslamabadIn a Smart Grid (SG) scenario, domestic consumers can gain cost reduction benefit by scheduling their Appliance Activation Time (AAT) towards the slots of low charge. Minimization in cost is essential in Home Energy Management Systems (HEMS) to induce consumers acceptance for power scheduling to accommodate for a Demand Response (DR) at peak hours. Despite the fact that many algorithms address the power scheduling for HEMS, community based optimization has not been the focus. This paper presents an algorithm that targets the minimization of energy costs of whole community while keeping a low Peak to Average Ratio (PAR) and smooth Power Usage Pattern (PUP). Objective of cost reduction is accomplished by finding most favorable AAT by Particle Swarm Optimization (PSO) in conjunction with Inclined Block Rate (IBR) approach and Circular Price Shift (CPS). Simulated numerical results demonstrate the effectiveness of CPS to assist the merger of PSO & IBR to enhance the reduction/stability of PAR and cost reduction.http://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/657
collection DOAJ
language English
format Article
sources DOAJ
author Muhammad Adnan Aziz
Ijaz Mansoor Qureshi
Tanweer Ahmed Cheema
Engr. Akram Rashid
spellingShingle Muhammad Adnan Aziz
Ijaz Mansoor Qureshi
Tanweer Ahmed Cheema
Engr. Akram Rashid
COMMUNITY BASED HOME ENERGY MANAGEMENT SYSTEM
International Islamic University Malaysia Engineering Journal
author_facet Muhammad Adnan Aziz
Ijaz Mansoor Qureshi
Tanweer Ahmed Cheema
Engr. Akram Rashid
author_sort Muhammad Adnan Aziz
title COMMUNITY BASED HOME ENERGY MANAGEMENT SYSTEM
title_short COMMUNITY BASED HOME ENERGY MANAGEMENT SYSTEM
title_full COMMUNITY BASED HOME ENERGY MANAGEMENT SYSTEM
title_fullStr COMMUNITY BASED HOME ENERGY MANAGEMENT SYSTEM
title_full_unstemmed COMMUNITY BASED HOME ENERGY MANAGEMENT SYSTEM
title_sort community based home energy management system
publisher IIUM Press, International Islamic University Malaysia
series International Islamic University Malaysia Engineering Journal
issn 1511-788X
2289-7860
publishDate 2017-05-01
description In a Smart Grid (SG) scenario, domestic consumers can gain cost reduction benefit by scheduling their Appliance Activation Time (AAT) towards the slots of low charge. Minimization in cost is essential in Home Energy Management Systems (HEMS) to induce consumers acceptance for power scheduling to accommodate for a Demand Response (DR) at peak hours. Despite the fact that many algorithms address the power scheduling for HEMS, community based optimization has not been the focus. This paper presents an algorithm that targets the minimization of energy costs of whole community while keeping a low Peak to Average Ratio (PAR) and smooth Power Usage Pattern (PUP). Objective of cost reduction is accomplished by finding most favorable AAT by Particle Swarm Optimization (PSO) in conjunction with Inclined Block Rate (IBR) approach and Circular Price Shift (CPS). Simulated numerical results demonstrate the effectiveness of CPS to assist the merger of PSO & IBR to enhance the reduction/stability of PAR and cost reduction.
url http://journals.iium.edu.my/ejournal/index.php/iiumej/article/view/657
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AT ijazmansoorqureshi communitybasedhomeenergymanagementsystem
AT tanweerahmedcheema communitybasedhomeenergymanagementsystem
AT engrakramrashid communitybasedhomeenergymanagementsystem
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