Smart Buildings Aggregator Bidding Strategy as a Negawatt Demand Response Resources in the Spinning Reserve Electricity Market

Demand response resources are one of the possible solutions for solving the network and market problems. Demand response refers to end-users shifts in electricity usage from their usual consumption pattern while network reliability is jeopardized or changes to market prices. The smart building conta...

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Main Authors: Safari, A., Tahmasebi, M., Pasupuleti, J.
Format: Conference Paper
Language:English
Published: 2020
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spelling my.uniten.dspace-128712020-03-17T02:43:00Z Smart Buildings Aggregator Bidding Strategy as a Negawatt Demand Response Resources in the Spinning Reserve Electricity Market Safari, A. Tahmasebi, M. Pasupuleti, J. Demand response resources are one of the possible solutions for solving the network and market problems. Demand response refers to end-users shifts in electricity usage from their usual consumption pattern while network reliability is jeopardized or changes to market prices. The smart building contains 'the use of coordinates innovative building frameworks, communications, and controls to form a building and its infrastructure which gives the proprietor, administrator, and occupant with an environment which is adaptable, viable, comfortable and secure'. Smart buildings ready to be interconnected with smart grids and Triangulum smart cities project should comply with the following demand response capabilities. In this paper, we have proposed a new bidding strategy for the smart buildings aggregator as a 'Negawatt Demand Response Resources' in the electricity market based on self-scheduling method. The self-scheduling framework is formulated as a linear model. This model is optimized under the General Algebraic Modeling System (GAMS) software. The results of case studies are discussed in detail. © 2019 IEEE. 2020-02-03T03:27:27Z 2020-02-03T03:27:27Z 2019 Conference Paper 10.1109/ISGTEurope.2019.8905471 en
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
language English
description Demand response resources are one of the possible solutions for solving the network and market problems. Demand response refers to end-users shifts in electricity usage from their usual consumption pattern while network reliability is jeopardized or changes to market prices. The smart building contains 'the use of coordinates innovative building frameworks, communications, and controls to form a building and its infrastructure which gives the proprietor, administrator, and occupant with an environment which is adaptable, viable, comfortable and secure'. Smart buildings ready to be interconnected with smart grids and Triangulum smart cities project should comply with the following demand response capabilities. In this paper, we have proposed a new bidding strategy for the smart buildings aggregator as a 'Negawatt Demand Response Resources' in the electricity market based on self-scheduling method. The self-scheduling framework is formulated as a linear model. This model is optimized under the General Algebraic Modeling System (GAMS) software. The results of case studies are discussed in detail. © 2019 IEEE.
format Conference Paper
author Safari, A.
Tahmasebi, M.
Pasupuleti, J.
spellingShingle Safari, A.
Tahmasebi, M.
Pasupuleti, J.
Smart Buildings Aggregator Bidding Strategy as a Negawatt Demand Response Resources in the Spinning Reserve Electricity Market
author_facet Safari, A.
Tahmasebi, M.
Pasupuleti, J.
author_sort Safari, A.
title Smart Buildings Aggregator Bidding Strategy as a Negawatt Demand Response Resources in the Spinning Reserve Electricity Market
title_short Smart Buildings Aggregator Bidding Strategy as a Negawatt Demand Response Resources in the Spinning Reserve Electricity Market
title_full Smart Buildings Aggregator Bidding Strategy as a Negawatt Demand Response Resources in the Spinning Reserve Electricity Market
title_fullStr Smart Buildings Aggregator Bidding Strategy as a Negawatt Demand Response Resources in the Spinning Reserve Electricity Market
title_full_unstemmed Smart Buildings Aggregator Bidding Strategy as a Negawatt Demand Response Resources in the Spinning Reserve Electricity Market
title_sort smart buildings aggregator bidding strategy as a negawatt demand response resources in the spinning reserve electricity market
publishDate 2020
_version_ 1662758781805658112
score 13.222552