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Unmanned aerial vehicles and service-oriented architecture: LARISSA and knowledge based framework’s first study

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNConference contribution/Paperpeer-review

Published

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Unmanned aerial vehicles and service-oriented architecture: LARISSA and knowledge based framework’s first study. / Marconato, Emerson; Rodrigues, Douglas; Chaves, Arthur A. et al.
Proceedings 10th International Conference on Autonomic and Autonomous Systems . Think Mind, 2014. p. 5-10.

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNConference contribution/Paperpeer-review

Harvard

Marconato, E, Rodrigues, D, Chaves, AA, Ramdhany, R, Branco, KC & Coulson, G 2014, Unmanned aerial vehicles and service-oriented architecture: LARISSA and knowledge based framework’s first study. in Proceedings 10th International Conference on Autonomic and Autonomous Systems . Think Mind, pp. 5-10. <http://www.thinkmind.org/index.php?view=article&articleid=icas_2014_1_20_20031>

APA

Marconato, E., Rodrigues, D., Chaves, A. A., Ramdhany, R., Branco, K. C., & Coulson, G. (2014). Unmanned aerial vehicles and service-oriented architecture: LARISSA and knowledge based framework’s first study. In Proceedings 10th International Conference on Autonomic and Autonomous Systems (pp. 5-10). Think Mind. http://www.thinkmind.org/index.php?view=article&articleid=icas_2014_1_20_20031

Vancouver

Marconato E, Rodrigues D, Chaves AA, Ramdhany R, Branco KC, Coulson G. Unmanned aerial vehicles and service-oriented architecture: LARISSA and knowledge based framework’s first study. In Proceedings 10th International Conference on Autonomic and Autonomous Systems . Think Mind. 2014. p. 5-10

Author

Marconato, Emerson ; Rodrigues, Douglas ; Chaves, Arthur A. et al. / Unmanned aerial vehicles and service-oriented architecture : LARISSA and knowledge based framework’s first study. Proceedings 10th International Conference on Autonomic and Autonomous Systems . Think Mind, 2014. pp. 5-10

Bibtex

@inproceedings{51fb6fad2b1c448db4065e0a17f1a96b,
title = "Unmanned aerial vehicles and service-oriented architecture: LARISSA and knowledge based framework{\textquoteright}s first study",
abstract = "Embedded systems are computer systems that are part of a larger system, which generally provide real-time monitoring and control. They execute a predefined set of tasks on behalf of a real-time application, and may have special requirements based on the application domain they support. For instance, these systems are considered safety-critical embedded systems when failure may result in loss of life or high-value assets. UAVs (Unmanned Aerial Vehicles) constitute a typical application of a complex critical embedded system. One concept that can result in radically different solutions in UAVs is the use of Service-Oriented Architecture (SOA) based on standard reference model architecture. The increasing use of SOA in critical applications demands dependable and cost-effective techniques to ensure high security. In this paper we developed different kind of services for avionics with different parameters (security, reliability and performance) to provide use of SOA in a less critical part in the whole systems. Both LARISSA (Layered Architecture Model Interconnection Systems in UAV) and KBF (Knowledge Based Framework for Dynamically Changing Applications) presented in this paper can give more intelligence to UAVs and provide a new way of segregating the UAV mission from the vehicle itself. Some services were developed and a performance evaluation was conducted showing the benefits in choosing some determined services.",
keywords = "Critical embedded systems, UAVs, SOA, Web Services , performance",
author = "Emerson Marconato and Douglas Rodrigues and Chaves, {Arthur A.} and Rajiv Ramdhany and Branco, {Kalinka C.} and Geoffrey Coulson",
year = "2014",
language = "English",
isbn = "9781612083315",
pages = "5--10",
booktitle = "Proceedings 10th International Conference on Autonomic and Autonomous Systems",
publisher = "Think Mind",

}

RIS

TY - GEN

T1 - Unmanned aerial vehicles and service-oriented architecture

T2 - LARISSA and knowledge based framework’s first study

AU - Marconato, Emerson

AU - Rodrigues, Douglas

AU - Chaves, Arthur A.

AU - Ramdhany, Rajiv

AU - Branco, Kalinka C.

AU - Coulson, Geoffrey

PY - 2014

Y1 - 2014

N2 - Embedded systems are computer systems that are part of a larger system, which generally provide real-time monitoring and control. They execute a predefined set of tasks on behalf of a real-time application, and may have special requirements based on the application domain they support. For instance, these systems are considered safety-critical embedded systems when failure may result in loss of life or high-value assets. UAVs (Unmanned Aerial Vehicles) constitute a typical application of a complex critical embedded system. One concept that can result in radically different solutions in UAVs is the use of Service-Oriented Architecture (SOA) based on standard reference model architecture. The increasing use of SOA in critical applications demands dependable and cost-effective techniques to ensure high security. In this paper we developed different kind of services for avionics with different parameters (security, reliability and performance) to provide use of SOA in a less critical part in the whole systems. Both LARISSA (Layered Architecture Model Interconnection Systems in UAV) and KBF (Knowledge Based Framework for Dynamically Changing Applications) presented in this paper can give more intelligence to UAVs and provide a new way of segregating the UAV mission from the vehicle itself. Some services were developed and a performance evaluation was conducted showing the benefits in choosing some determined services.

AB - Embedded systems are computer systems that are part of a larger system, which generally provide real-time monitoring and control. They execute a predefined set of tasks on behalf of a real-time application, and may have special requirements based on the application domain they support. For instance, these systems are considered safety-critical embedded systems when failure may result in loss of life or high-value assets. UAVs (Unmanned Aerial Vehicles) constitute a typical application of a complex critical embedded system. One concept that can result in radically different solutions in UAVs is the use of Service-Oriented Architecture (SOA) based on standard reference model architecture. The increasing use of SOA in critical applications demands dependable and cost-effective techniques to ensure high security. In this paper we developed different kind of services for avionics with different parameters (security, reliability and performance) to provide use of SOA in a less critical part in the whole systems. Both LARISSA (Layered Architecture Model Interconnection Systems in UAV) and KBF (Knowledge Based Framework for Dynamically Changing Applications) presented in this paper can give more intelligence to UAVs and provide a new way of segregating the UAV mission from the vehicle itself. Some services were developed and a performance evaluation was conducted showing the benefits in choosing some determined services.

KW - Critical embedded systems

KW - UAVs

KW - SOA

KW - Web Services

KW - performance

M3 - Conference contribution/Paper

SN - 9781612083315

SP - 5

EP - 10

BT - Proceedings 10th International Conference on Autonomic and Autonomous Systems

PB - Think Mind

ER -