Memory Optimization of a Distributed Middleware for Smart Grid Applications
Stephan Cejka, Albin Frischenschlager, Mario Faschang, Mark Stefan
2017
Abstract
In order to exploit the full potential of IoT-enabled power distribution grids, Smart Grid applications are developed. Their operation on resource-constraint automation devices requires for memory optimized operation. In this paper we present field-approved operation and management solutions for Smart Grid applications, based on a distributed middleware. We introduce a new entity to allow for dynamically loading Smart Grid applications within one JVM. Presented experiments demonstrate the reduction of the memory footprint on the physical device.
References
- Cejka, S., Frischenschlager, A., Faschang, M., and Stefan, M. (2017). Security concepts in a distributed middleware for smart grid applications. In Symposium on Innovative Smart Grid Cybersecurity Solutions 2017, pages 104-108.
- Cejka, S., Mosshammer, R., and Einfalt, A. (2015). Java embedded storage for time series and meta data in Smart Grids. In 2015 IEEE International Conference on Smart Grid Communications (SmartGridComm), pages 434-439.
- CEN-CENELEC-ETSI (2012). Smart Grid Reference Architecture. Technical Report, CEN-CENELEC-ETSI Smart Grid Coordination Group.
- Einfalt, A., Zeilinger, F., Schwalbe, R., Bletterie, B., and Kadam, S. (2013). Controlling active low voltage distribution grids with minimum efforts on costs and engineering. In 39th Annual Conference of the IEEE Industrial Electronics Society (IECON), pages 7456- 7461.
- Faschang, M., Cejka, S., Stefan, M., Frischenschlager, A., Einfalt, A., Diwold, K., Pröstl Andrén, F., Strasser, T., and Kupzog, F. (2017). Provisioning, deployment, and operation of smart grid applications on substation level. Computer Science - Research and Development, 32(1):117-130.
- Faschang, M., Stefan, M., Kupzog, F., Einfalt, A., and Cejka, S. (2016). 'iSSN Application Frame' - a flexible and performant framework hosting smart grid applications. In CIRED Workshop 2016. paper 255.
- Gama, K. and Donsez, D. (2009). Towards Dynamic Component Isolation in a Service Oriented Platform, pages 104-120. Springer Berlin Heidelberg, Berlin, Heidelberg.
- Gawron-Deutsch, T., Cejka, S., Einfalt, A., and Lechner, D. (2015). Proof-of-Concept for market based grid quality assurance. In 23rd International Conference on Electricity Distribution (CIRED). paper 1495.
- Gawron-Deutsch, T., Kupzog, F., and Einfalt, A. (2014). Integration of energy market and distribution grid operation by means of a flexibility operator. e & i Elektrotechnik und Informationstechnik, 131(3):91-98.
- Geoffray, N., Thomas, G., Folliot, B., and Clément, C. (2008). Towards a new isolation abstraction for osgi. In Proceedings of the 1st Workshop on Isolation and Integration in Embedded Systems, IIES 7808, pages 41- 45, New York, NY, USA. ACM.
- Razzaque, M. A., Milojevic-Jevric, M., Palade, A., and Clarke, S. (2016). Middleware for internet of things: A survey. IEEE Internet of Things Journal, 3(1):70- 95.
- Yu, X. and Xue, Y. (2016). Smart grids: A cyberphysical systems perspective. Proceedings of the IEEE, 104(5):1058-1070.
Paper Citation
in Harvard Style
Cejka S., Frischenschlager A., Faschang M. and Stefan M. (2017). Memory Optimization of a Distributed Middleware for Smart Grid Applications . In Proceedings of the 2nd International Conference on Internet of Things, Big Data and Security - Volume 1: IoTBDS, ISBN 978-989-758-245-5, pages 331-337. DOI: 10.5220/0006350403310337
in Bibtex Style
@conference{iotbds17,
author={Stephan Cejka and Albin Frischenschlager and Mario Faschang and Mark Stefan},
title={Memory Optimization of a Distributed Middleware for Smart Grid Applications},
booktitle={Proceedings of the 2nd International Conference on Internet of Things, Big Data and Security - Volume 1: IoTBDS,},
year={2017},
pages={331-337},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0006350403310337},
isbn={978-989-758-245-5},
}
in EndNote Style
TY - CONF
JO - Proceedings of the 2nd International Conference on Internet of Things, Big Data and Security - Volume 1: IoTBDS,
TI - Memory Optimization of a Distributed Middleware for Smart Grid Applications
SN - 978-989-758-245-5
AU - Cejka S.
AU - Frischenschlager A.
AU - Faschang M.
AU - Stefan M.
PY - 2017
SP - 331
EP - 337
DO - 10.5220/0006350403310337