The emergence of energy-scavenging techniques for powering networks of embedded devices is raising the need for dedicated simulation frameworks that can support researchers and developers in the design and performance evaluation of harvesting-aware protocols and algorithms. In this work we present GreenCastalia, an open-source energy-harvesting simulation framework we have developed for the popular Castalia simulator. GreenCastalia supports multi-source and multi-storage energy harvesting architectures, it is highly modular and easily customizable. In addition, it allows to simulate networks of embedded devices with heterogeneous harvesting capabilities.

The emergence of energy-scavenging techniques for powering networks of embedded devices is raising the need for dedicated simulation frameworks that can support researchers and developers in the design and performance evaluation of harvesting-aware protocols and algorithms. In this work we present GreenCastalia, an open-source energy-harvesting simulation framework we have developed for the popular Castalia simulator. GreenCastalia supports multi-source and multi-storage energy harvesting architectures, it is highly modular and easily customizable. In addition, it allows to simulate networks of embedded devices with heterogeneous harvesting capabilities. © 2013 ACM.

GreenCastalia: An energy-harvesting-enabled framework for the Castalia simulator / Benedetti, David; Petrioli, Chiara; Spenza, Dora. - (2013), pp. 1-6. (Intervento presentato al convegno 1st International Workshop on Energy Neutral Sensing Systems, ENSSys 2013 tenutosi a Rome nel 13 November 2013 through 13 November 2013) [10.1145/2534208.2534215].

GreenCastalia: An energy-harvesting-enabled framework for the Castalia simulator

BENEDETTI, DAVID;PETRIOLI, Chiara;SPENZA, DORA
2013

Abstract

The emergence of energy-scavenging techniques for powering networks of embedded devices is raising the need for dedicated simulation frameworks that can support researchers and developers in the design and performance evaluation of harvesting-aware protocols and algorithms. In this work we present GreenCastalia, an open-source energy-harvesting simulation framework we have developed for the popular Castalia simulator. GreenCastalia supports multi-source and multi-storage energy harvesting architectures, it is highly modular and easily customizable. In addition, it allows to simulate networks of embedded devices with heterogeneous harvesting capabilities.
2013
1st International Workshop on Energy Neutral Sensing Systems, ENSSys 2013
The emergence of energy-scavenging techniques for powering networks of embedded devices is raising the need for dedicated simulation frameworks that can support researchers and developers in the design and performance evaluation of harvesting-aware protocols and algorithms. In this work we present GreenCastalia, an open-source energy-harvesting simulation framework we have developed for the popular Castalia simulator. GreenCastalia supports multi-source and multi-storage energy harvesting architectures, it is highly modular and easily customizable. In addition, it allows to simulate networks of embedded devices with heterogeneous harvesting capabilities. © 2013 ACM.
castalia; network simulations; wireless sensor networks; energy harvesting
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
GreenCastalia: An energy-harvesting-enabled framework for the Castalia simulator / Benedetti, David; Petrioli, Chiara; Spenza, Dora. - (2013), pp. 1-6. (Intervento presentato al convegno 1st International Workshop on Energy Neutral Sensing Systems, ENSSys 2013 tenutosi a Rome nel 13 November 2013 through 13 November 2013) [10.1145/2534208.2534215].
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