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Book ChapterDOI

A Min-conflict Algorithm for Power Scheduling Problem in a Smart Home Using Battery

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TLDR
One of the most popular heuristic algorithms known as a min-conflict algorithm (MCA) is adapted in this paper to address PSPSH and a smart home battery (SHB) is used as an additional source to attempt to enhance the schedule.
Abstract
Scheduling operations of smart home appliances using an electricity pricing scheme is the primary issue facing power supplier companies and their users, due to the scheduling efficiency in maintaining power system and reducing electricity bill (EB) for users. This problem is known as power scheduling problem in a smart home (PSPSH). PSPSH can be addressed by shifting appliances operation time from period to another. The primary objectives of addressing PSPSH are minimizing EB, balancing power demand by reducing peak-to-average ratio (PAR), and maximizing satisfaction level of users. One of the most popular heuristic algorithms known as a min-conflict algorithm (MCA) is adapted in this paper to address PSPSH. A smart home battery (SHB) is used as an additional source to attempt to enhance the schedule. The experiment results showed the robust performance of the proposed MCA with SHB in achieving PSPSH objectives. In addition, MCA is compared with Biogeography based Optimization (BBO) to evaluate its obtained results. The comparison showed that MCA obtained better schedule in terms of reducing EB and PAR, and BBO performed better in improving user comfort.

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Citations
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Journal ArticleDOI

Smart Homes: How Much Will They Support Us? A Research on Recent Trends and Advances

TL;DR: In this paper, the authors present a comparative study of recent advances in smart home development and present the main trends in this field, and provide an outlook on the wide spectrum of the proposed solutions.
Journal ArticleDOI

Smart home battery for the multi-objective power scheduling problem in a smart home using grey wolf optimizer

TL;DR: A new formulation for smart home battery (SHB) is proposed for PSPSH that reduces the effect of restrictions in obtaining the optimal/near-optimal solutions and exhibits and yields better performance than the other compared algorithms in almost all scenarios.
Book ChapterDOI

An Improved Text Feature Selection for Clustering Using Binary Grey Wolf Optimizer

TL;DR: This work proposes a binary grey wolf optimizer (BGWO) algorithm to tackle the text FS problem, which introduces a new implementation of the GWO algorithm by selecting informative features from the text using the clustering technique.
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A Modified Coronavirus Herd Immunity Optimizer for the Power Scheduling Problem

TL;DR: The coronavirus herd immunity optimizer (CHIO) is modified to tackle a discrete power scheduling problem in a smart home (PSPSH) and shows encouraging results and almost obtains the best results in all consumption scenarios.
Journal ArticleDOI

A novel link-based Multi-objective Grey Wolf Optimizer for Appliances Energy Scheduling Problem

TL;DR: A modified version of the Multi-objective Grey Wolf Optimizer (MGWO), known as linked-based GWO, is proposed for the Appliances Energy Scheduling Problem (AESP), and is able to outperform the compared methods in almost all produced results.
References
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Journal ArticleDOI

Minimizing conflicts: a heuristic repair method for constraint satisfaction and scheduling problems

TL;DR: In this article, the min-conflicts heuristic is used to minimize the number of constraint violations after each step in a value-ordering heuristic search, which can be used with a variety of different search strategies.
Journal ArticleDOI

An Optimal Power Scheduling Method for Demand Response in Home Energy Management System

TL;DR: This research combines RTP with the inclining block rate (IBR) model and proposes an efficient scheduling method for home power usage that would effectively reduce both the electricity cost and PAR, thereby, strengthening the stability of the entire electricity system.
Journal ArticleDOI

Load forecasting, dynamic pricing and DSM in smart grid: A review

TL;DR: A comprehensive and comparative review of the LF and dynamic pricing schemes in smart grid environment, including Real Time Pricing (RTP), Time of Use (ToU) and Critical Peak Pricing (CPP) are presented.
Journal ArticleDOI

Exploiting heuristic algorithms to efficiently utilize energy management controllers with renewable energy sources

TL;DR: A generic architecture for demand side management (DSM) which integrates residential area domain with smart area domain via wide area network and performs more efficiently than BPSO based energy management controller and ACO basedEnergy management controller in terms of electricity bill reduction, peak to average ratio minimization and user comfort level maximization.
Journal ArticleDOI

A harmony search algorithm for university course timetabling

TL;DR: A harmony search and a modified harmony search algorithm are applied to university course timetabling against standard benchmarks and the results show that the proposed methods are capable of providing viable solutions in comparison to previous works.
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