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  1. Research Outputs

Scalable and privacy-preserving admission control for smart grids

Conference Paper
Publication Date:
2015
Short description:
Scalable and privacy-preserving admission control for smart grids / Neglia, G.; Di Bella, G.; Giarrè, Laura; Tinnirello, I.. - 54:(2015), pp. 7403038.5233-7403038.5238. ( 54th IEEE Conference on Decision and Control, CDC 2015 Osaka 15-18 December 2015) [10.1109/CDC.2015.7403038].
abstract:
Energy demand and production need to be constantly matched in the power grid. The traditional paradigm to continuously adapt the production to the demand is challenged by the increasing penetration of more variable and less predictable energy sources, like solar photovoltaics and wind power. An alternative approach is the so called direct control of some inherently flexible electric loads to shape the demand. Direct control of deferrable loads presents analogies with flow admission control in telecommunication networks: a request for network resources (bandwidth or energy) can be delayed on the basis of the current network status in order to guarantee some performance metrics. In this paper we go beyond such an analogy, showing that usual teletraffic tools can be effectively used to control energy loads. In particular we propose a family of control schemes which can be easily tuned to achieve the desired trade-off among resources usage, control overhead and privacy leakage.
Iris type:
Relazione in Atti di Convegno
Keywords:
Admission control; Home appliances; Logic gates; Power demand; Privacy; Random variables; Shape; Control and Systems Engineering; Modeling and Simulation; Control and Optimization
List of contributors:
Neglia, G.; Di Bella, G.; Giarrè, Laura; Tinnirello, I.
Authors of the University:
GIARRĂˆ Laura
Handle:
https://iris.unimore.it/handle/11380/1123547
Book title:
2015 IEEE 54th Annual Conference on Decision and Control (CDC 2015)
Published in:
PROCEEDINGS OF THE IEEE CONFERENCE ON DECISION & CONTROL
Journal
PROCEEDINGS OF THE IEEE CONFERENCE ON DECISION & CONTROL
Series
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