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Low complexity approach for energy management in residential buildings

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This article is published in International Transactions on Electrical Energy Systems.The article was published on 2019-01-01. It has received 37 citations till now. The article focuses on the topics: Thesaurus (information retrieval) & Energy management.

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A Survey on Home Energy Management

TL;DR: This work aims to survey the most recent literature on home energy management systems, providing an aggregated and unified perspective in the context of residential buildings.
Journal ArticleDOI

Joint Energy Management and Energy Trading in Residential Microgrid System

TL;DR: The joint energy management and energy trading model is presented, which provides low-cost electricity consumption to the distribution system and reduced the electricity cost of the microgrids with maximum share of self-generation.
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A Compendium of Performance Metrics, Pricing Schemes, Optimization Objectives, and Solution Methodologies of Demand Side Management for the Smart Grid

TL;DR: In this paper, the authors focused on DSM and potential applications of DSM in the smart grid and provided a comprehensive review of DSM performance metrics, optimization objectives, and solution methodologies.
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Electric vehicles integration and vehicle-to-grid operation in active distribution grids: A comprehensive review on power architectures, grid connection standards and typical applications

TL;DR: In this article , a comprehensive review of distribution grid architectures, grid connection infrastructures and standards, and typical applications is conducted from the perspective of EV-grid integration and V2G operation for the first time.
References
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Journal ArticleDOI

Nonlinear Model Reduction via Discrete Empirical Interpolation

TL;DR: A dimension reduction method called discrete empirical interpolation is proposed and shown to dramatically reduce the computational complexity of the popular proper orthogonal decomposition (POD) method for constructing reduced-order models for time dependent and/or parametrized nonlinear partial differential equations (PDEs).
Journal Article

An introduction to the proper orthogonal decomposition

Anindya Chatterjee
- 01 Jan 2000 - 
TL;DR: A tutorial is presented on the Proper Orthogonal Decomposition (POD), which finds applications in computationally processing large amounts of high-dimensio nal data with the aim of obtaining low-dimensional descriptions that capture much of the phenomena of interest.
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An Algorithm for Intelligent Home Energy Management and Demand Response Analysis

TL;DR: An intelligent HEM algorithm for managing high power consumption household appliances with simulation for demand response (DR) analysis is presented and a simulation tool is developed to showcase the applicability of the proposed algorithm in performing DR at an appliance level.
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A Short Review on Model Order Reduction Based on Proper Generalized Decomposition

TL;DR: This paper revisits a new model reduction methodology based on the use of separated representations, the so called Proper Generalized Decomposition—PGD, which allows to treat efficiently models defined in degenerated domains as well as the multidimensional models arising from multiddimensional physics or from the standard ones when some sources of variability are introduced in the model as extra-coordinates.
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Nonlinear model order reduction based on local reduced-order bases

TL;DR: In this article, a local reduced-order base is proposed for nonlinear computational fluid and fluid-structure-electric interaction problems, which is particularly suited for problems characterized by different physical regimes, parameter variations, or moving features such as discontinuities and fronts.
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