Transactive energy framework in multi-carrier energy hubs: A fully decentralized model
Jan Lust,Mohammad Sadegh Javadi,Ali Esmaeel Nezhad,Ahmad Rezaee Jordehi,Matthew Gough,Sergio F. Santos,Joao P. S. Catalao +6 more
TLDR
The obtained results confirm that the coordinated model can efficiently handle the P2P transactive energy trading for different energy hubs, addressing the minimum data exchange issue, and achieving the least-cost operation of the energy hubs in the system.About:
This article is published in Energy.The article was published on 2022-01-01 and is currently open access. It has received 66 citations till now. The article focuses on the topics: Transactive memory & Peer-to-peer.read more
Citations
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A two-stage joint operation and planning model for sizing and siting of electrical energy storage devices considering demand response programs
Mohammad Sadegh Javadi,Matthew Gough,Seyed Amir Mansouri,Amir Ahmarinejad,Emad Nematbakhsh,Sergio F. Santos,Joao P. S. Catalao +6 more
TL;DR: In this article , the authors proposed a two-stage optimization model for the optimal sizing and siting of electrical energy storage devices (EESDs) in Smart Grids, accounting for the presence of time-varying electricity tariffs due to Demand Response Program (DRP) participation.
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Optimal operation of energy hubs including parking lots for hydrogen vehicles and responsive demands
Mohammad Nasir,Ahmad Rezaee Jordehi,Seyed Alireza Alavi Matin,Vahid Sohrabi Tabar,Marcos Tostado-Véliz,Seyed Amir Mansouri +5 more
TL;DR: In this article , a stochastic model is designed for unit commitment in energy hubs, which include hydrogen vehicle (HV) parking lot, electric heat pump (EHP), absorption chiller (AC), photovoltaic (PV) module, boiler, hydrogen electrolyzer (HE) and electric, thermal, cooling and hydrogen storage systems.
A max–min–max robust optimization model for multi-carrier energy systems integrated with power to gas storage system
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Blockchain-Based Peer-to-Peer Transactive Energy Management Scheme for Smart Grid System
Aparna Kumari,Urvi Chintukumar Sukharamwala,Sudeep Tanwar,Maria Simona Raboaca,Fayez Alqahtani,Amr Tolba,Ravi Sharma,Ioan Aşchilean,Traian Candin Mihaltan +8 more
TL;DR: In this article , the authors proposed a decentralized and transparent P2P energy trading (DT-P2PET) scheme using blockchain, which aims to reduce the grid's energy generation and management burden while also increasing profit for both consumers and prosumers through a dynamic pricing mechanism.
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A scenario-based approach for optimal operation of energy hub under different schemes and structures
TL;DR: In this article , a scenario-based approach for EHs' optimal operation considering wind turbine (WT) and photovoltaic (PV) uncertainties is proposed, and the proposed approach is applied to EH under different schemes.
References
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Consensus-Based Approach to Peer-to-Peer Electricity Markets With Product Differentiation
TL;DR: A relaxed consensus + innovation (RCI) approach is described to solve the MBED in fully decentralized manner, allowing for a fully decentralized market clearing that converges with a negligible optimality gap, with a limited amount of information being shared.
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A Decentralized Bilateral Energy Trading System for Peer-to-Peer Electricity Markets
TL;DR: A novel algorithm using primal-dual gradient method is described to clear the market in a fully decentralized manner without interaction of any central entity and it is found that market players can trade energy to maximize their welfare without violating line flow constraints.
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Microgrid Transactive Energy: Review, Architectures, Distributed Ledger Technologies, and Market Analysis
Muhammad Fahad Zia,Mohamed Benbouzid,Elhoussin Elbouchikhi,S. M. Muyeen,Kuaanan Techato,Josep M. Guerrero +5 more
TL;DR: The proposed architecture and analytical review of distributed ledger technologies and local energy markets pave the way for advanced research and industrialization of transactive energy systems.
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Towards transactive energy systems: An analysis on current trends
TL;DR: A comprehensive analysis on the latest advances in transactive energy systems and how such systems can be implemented in the smart grid paradigm is presented.
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A stochastic self-scheduling program for compressed air energy storage (CAES) of renewable energy sources (RESs) based on a demand response mechanism
TL;DR: In this article, a stochastic self-scheduling of renewable energy sources (RESs) considering compressed air energy storage (CAES) in the presence of a demand response program (DRP) is proposed.