Title :
Fault tolerant aggregation for power system services
Author :
Kosek, Anna Magdalena ; Gehrke, Oliver ; Kullmann, Daniel
Author_Institution :
Dept. of Electr. Eng., Tech. Univ. of Denmark, Roskilde, Denmark
Abstract :
Exploiting the flexibility in distributed energy resources (DER) is seen as an important contribution to allow high penetrations of renewable generation in electrical power systems. However, the present control infrastructure in power systems is not well suited for the integration of a very large number of small units. A common approach is to aggregate a portfolio of such units together and expose them to the power system as a single large virtual unit. In order to realize the vision of a Smart Grid, concepts for flexible, resilient and reliable aggregation infrastructures are required. This paper presents such a concept while focusing on the aspect of resilience and fault tolerance. The proposed concept makes use of a multi-level election algorithm to transparently manage the addition, removal, failure and reorganization of units. It has been implemented and tested as a proof-of-concept on the distributed smart grid test bed SYSLAB at the Technical University of Denmark.
Keywords :
distributed power generation; fault tolerance; power generation faults; power generation reliability; renewable energy sources; smart power grids; DER; SYSLAB; distributed energy resources; distributed smart grid test bed; electrical power systems; fault tolerant aggregation; flexible infrastructures; multilevel election algorithm; power system services; reliable aggregation infrastructure; renewable generation; resilient infrastructure; units portfolio; virtual unit; Aggregates; Buildings; Density estimation robust algorithm; Nominations and elections; Power system dynamics; Power system reliability;
Conference_Titel :
Intelligent Energy Systems (IWIES), 2013 IEEE International Workshop on
Conference_Location :
Vienna
DOI :
10.1109/IWIES.2013.6698570