Title :
Multi-Agent System (MAS) for short-term generation scheduling of a microgrid
Author :
Logenthiran, T. ; Srinivasan, Dipti ; Khambadkone, A.M. ; Aung, H.N.
Author_Institution :
Dept. of Electr. & Comput. Eng., Nat. Univ. of Singapore, Singapore, Singapore
Abstract :
Microgrids are low voltage distribution networks comprising various distributed generators, storage devices and controllable loads. Microgrid can be operated in interconnected mode or islanded mode. Optimal generation scheduling is one of the microgrid energy management system´s function for optimizing the microgrid operation. This paper presents a Multi-Agent System (MAS) for generation scheduling of a microgrid. The proposed MAS architecture has different types of agents such as micro source controller agent, load controller agent, storage agent, and microgrid controller agent. Micro source controller agent that models corresponding distributed energy source such as photovoltaic, wind turbine and distributed generators, maximizes its power production subject to production cost and unit´s constraints. Load controller agent that represents corresponding controllable load in the system, is capable to do demand side management techniques. The main goal of this paper is to develop a distributed MAS for generation scheduling and monitoring of energy resources for optimized microgrid operation. The MAS was successfully developed in JADE, which is a well-known FIPA compliant open source multi-agent platform.
Keywords :
demand side management; distributed power generation; energy management systems; load regulation; multi-agent systems; power engineering computing; power generation scheduling; power grids; power system interconnection; MAS; demand side management; distributed energy source; distribution networks; energy management system; generation scheduling; interconnected mode; islanded mode; load controller agent; microgrid; microsource controller; multi-agent system; Batteries; Density estimation robust algorithm; Generators; Intelligent agent; Power generation; Power systems; Production;
Conference_Titel :
Sustainable Energy Technologies (ICSET), 2010 IEEE International Conference on
Conference_Location :
Kandy
Print_ISBN :
978-1-4244-7192-8
DOI :
10.1109/ICSET.2010.5684943