A Demand-Response Scheme Using Multi-Agent System for Smart DC Microgrid

Author:

Rwegasira Diana Severine1,Ben Dhaou Imed Saad2,Kondoro Aron3,Anagnostou Anastasia4,Kelati Amleset5,Naiman Shililiandumi6,Taylor Simon J.E.4,Mvungi Nerey H.6,Tenhunen Hannu7

Affiliation:

1. Royal Institute of Technology, Stockholm, Sweden

2. Qassim University, Buraidah, Saudi Arabia & University of Monastir, Tunisia

3. Royal Institute of Technology, Stockholm, Sweden & University of Dar Es Salam, Tanzania

4. Brunel University London, Uxbridge, UK

5. University of Turku, Turku, Finland & Royal Institute of Technology, Sweden

6. University of Dar es Salaam, Dar es Salaam, Tanzania

7. Royal Institute of Technology, Kista, Sweden

Abstract

This article describes a framework for load shedding techniques using dynamic pricing and multi-agent system. The islanded microgrid uses solar panels and battery energy management system as a source of energy to serve remote communities who have no access to the grid with a randomized type of power in terms of individual load. The generated framework includes modeling of solar panels, battery storage and loads to optimize the energy usage and reduce the electricity bills. In this work, the loads are classified as critical and non-critical. The agents are designed in a decentralized manner, which includes solar agent, storage agent and load agent. The load shedding experiment of the framework is mapped with the manual operation done at Kisiju village, Pwani, Tanzania. Experiment results show that the use of pricing factor as a demand response makes the microgrid sustainable as it manages to control and monitor its supply and demand, hence, the load being capable of shedding its own appliances when the power supplied is not enough.

Publisher

IGI Global

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