Internet of Things Platform for Manage Multiple Message Queuing Telemetry Transport Broker Server
Corresponding Author(s) : Aulia Arif Wardana
Kinetik: Game Technology, Information System, Computer Network, Computing, Electronics, and Control,
Vol 4, No 3, August 2019
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- M. Chernyshev, Z. Baig, O. Bello, and S. Zeadally, “Internet of Things (IoT): Research, Simulators, and Testbeds,” IEEE Internet of Things Journal., Vol. 5, No. 3, Pp. 1637–1647, 2018.
- J. Rui and S. Danpeng, “Architecture Design of the Internet of Things based on Cloud Computing,” in Seventh International Conference on Measuring Technology and Mechatronics Automation, Pp. 206–209, 2015.
- P. Lea, Internet of Things for Architects. Packt Publishing, 2018.
- H. C. Hwang, J. Park, and J. G. Shon, “Design and Implementation of a Reliable Message Transmission System Based on MQTT Protocol in IoT,” Wireless Pers Commun., Springer, 2016.
- P. Waher, Learning Internet of Things. Packt Publishing, 2015.
- W. Pipatsakulroj, V. Visoottiviseth, and R. Takano, “muMQ: A Lightweight and Scalable MQTT Broker,” in IEEE International Symposium on Local and Metropolitan Area Networks (LANMAN), 2017.
- A.Zabasta, et. al, “MQTT Service Broker for Enabling the Interoperability of Smart City Systems,” in IEEE Energy and Sustainability for Small Developing Economies (ES2DE), 2018.
- P. Jutadhamakorn, et. al, “A Scalable and Low-Cost MQTT Broker Clustering System,” in 2nd International Conference on Information Technology (INCIT), 2017.
- S. Sen and A. Balasubramanian, “A Highly Resilient and Scalable Broker architecture for IoT applications,” in 10th International Conference on Communication Systems & Networks (COMSNETS) - Proceeding, Pp. 336–341, 2018.
- Y. Xu, V. Mahendran, and S. Radhakrishnan, “Towards SDN-based Fog Computing: MQTT Broker Virtualization for Effective and Reliable Delivery,” in Workshop on Wild and Crazy Ideas on the interplay between IoT and Big Data, 2016.
- K. Mekki, et. al, “A comparative study of LPWAN technologies for large-scale IoTdeployment,” ICT Express., Elsevier, Vol. 5, 2019.
- A. C. F. da Silva, et. al, “OpenTOSCA for IoT: Automating the Deployment of IoT Applications based on the Mosquitto Message Broker,” in ACM 6th International Conference on the Internet of Things, 2016.
- W. Li, et. al, “Performance Comparison of Cognitive Radio Sensor Networks for Industrial IoT With Different Deployment Patterns,” in IEEE Systems Journal, 2014.
- J. Huang, et. al, “A Novel Deployment Scheme for Green Internet of Things,” in IEEE Internet of Things Journal, 2014.
- M. B. Yassein, et. al, “Internet of Things: Survey and open issues of MQTT Protocol,” in International Conference on Engineering & MIS (ICEMIS), 2017.
- J. Yun, I. Ahn, N. Sung, and J. Kim, “A Device Software Platform for Consumer Electronics Based on the Internet of Things,” IEEE Transactions on Consumer Electronics., Vol. 61, No. 4, Pp. 564–570, 2015.
- R. Banno, et. al, “Dissemination of Edge-Heavy Data on Heterogeneous MQTT Brokers,” in IEEE 6th International Conference on Cloud Networking (CloudNet), 2017.
- P. S. Rompas, A. A. Wardana, and Albarda, “Robust Flood Monitoring Platform using Message Queueing Telemetry Transport Protocol,” in International Conference on Information Technology Systems and Innovation (ICITSI), 2017.
- N. Shofa, A. Rakhmatsyah, S. A. Karimah, “Infusion monitoring using WiFi (802.11) through MQTT protocol,” in 5th International Conference on Information and Communication Technology (ICoIC7), 2017.
- M. A. A. D. Cruz, et. al, “A Reference Model for Internet of Things Middleware,” IEEE Internet of Things Journal., Vol. 5, No. 2, Pp. 871–883, 2018.
- M. T. Lazarescu, “Design of a WSN Platform for Long-Term Environmental Monitoring for IoT Applications,” IEEE Journal on Emerging and Selected Topics in Circuits and Systems., Vol. 3, No. 1, Pp. 45–54, 2013.
- Y. J. Heo, et. al, “A Lightweight Platform Implementation for Internet of Things,” in 3rd International Conference on Future Internet of Things and Cloud, pp. 526–531, 2015.
- I. Culic and A. Radovici, “Development Platform for Building Advanced Internet of Things Systems,” in 16th RoEduNet Conference: Networking in Education and Research (RoEduNet), 2017.
- R. Elghondakly, S. Moussa, and N. Badr, “Waterfall and agile requirements-based model for automated test cases generation,” in IEEE Seventh International Conference on Intelligent Computing and Information Systems (ICICIS), 2015.
- M. Kuhrmann, et. al, “Hybrid software and system development in practice: waterfall, scrum, and beyond,” in ACM International Conference on Software and System Process, 2017.
- L. D. Vito, et. al, “An IoT-enabled Multi-sensor Multi-user System for Human Motion Measurements,” in IEEE International Symposium on Medical Measurements and Applications (MeMeA), 2017.
- E. Bocchi, L. D. Cicco, and D. Rossi, “Measuring the Quality of Experience of Web users,” in ACM SIGCOMM Computer Communication Review, 2016.
- L. Nguyen, et. al, “Modelling of Quality of Experience for Web Traffic,” in IEEE Second International Conference on Network Applications, Protocols and Services, 2010.
- M. Varvello, et. al, “EYEORG: A Platform For Crowdsourcing Web Quality Of Experience Measurements,” in ACM Proceedings of the 12th International on Conference on emerging Networking EXperiments and Technologies, 2016.
- A. E. Minarno, “Web Reporting Service dengan Database Terdistribusi untuk Monitoring Transaksi berbasis Point of Sales,” in Universitas Muhammadiyah Malang, 2009.
- Google, “Measure performance with The RAIL Model,” from https://developers.google.com/web/fundamentals/performance/rail#goals-and-guidelines, last access 05 July 2019.
References
M. Chernyshev, Z. Baig, O. Bello, and S. Zeadally, “Internet of Things (IoT): Research, Simulators, and Testbeds,” IEEE Internet of Things Journal., Vol. 5, No. 3, Pp. 1637–1647, 2018.
J. Rui and S. Danpeng, “Architecture Design of the Internet of Things based on Cloud Computing,” in Seventh International Conference on Measuring Technology and Mechatronics Automation, Pp. 206–209, 2015.
P. Lea, Internet of Things for Architects. Packt Publishing, 2018.
H. C. Hwang, J. Park, and J. G. Shon, “Design and Implementation of a Reliable Message Transmission System Based on MQTT Protocol in IoT,” Wireless Pers Commun., Springer, 2016.
P. Waher, Learning Internet of Things. Packt Publishing, 2015.
W. Pipatsakulroj, V. Visoottiviseth, and R. Takano, “muMQ: A Lightweight and Scalable MQTT Broker,” in IEEE International Symposium on Local and Metropolitan Area Networks (LANMAN), 2017.
A.Zabasta, et. al, “MQTT Service Broker for Enabling the Interoperability of Smart City Systems,” in IEEE Energy and Sustainability for Small Developing Economies (ES2DE), 2018.
P. Jutadhamakorn, et. al, “A Scalable and Low-Cost MQTT Broker Clustering System,” in 2nd International Conference on Information Technology (INCIT), 2017.
S. Sen and A. Balasubramanian, “A Highly Resilient and Scalable Broker architecture for IoT applications,” in 10th International Conference on Communication Systems & Networks (COMSNETS) - Proceeding, Pp. 336–341, 2018.
Y. Xu, V. Mahendran, and S. Radhakrishnan, “Towards SDN-based Fog Computing: MQTT Broker Virtualization for Effective and Reliable Delivery,” in Workshop on Wild and Crazy Ideas on the interplay between IoT and Big Data, 2016.
K. Mekki, et. al, “A comparative study of LPWAN technologies for large-scale IoTdeployment,” ICT Express., Elsevier, Vol. 5, 2019.
A. C. F. da Silva, et. al, “OpenTOSCA for IoT: Automating the Deployment of IoT Applications based on the Mosquitto Message Broker,” in ACM 6th International Conference on the Internet of Things, 2016.
W. Li, et. al, “Performance Comparison of Cognitive Radio Sensor Networks for Industrial IoT With Different Deployment Patterns,” in IEEE Systems Journal, 2014.
J. Huang, et. al, “A Novel Deployment Scheme for Green Internet of Things,” in IEEE Internet of Things Journal, 2014.
M. B. Yassein, et. al, “Internet of Things: Survey and open issues of MQTT Protocol,” in International Conference on Engineering & MIS (ICEMIS), 2017.
J. Yun, I. Ahn, N. Sung, and J. Kim, “A Device Software Platform for Consumer Electronics Based on the Internet of Things,” IEEE Transactions on Consumer Electronics., Vol. 61, No. 4, Pp. 564–570, 2015.
R. Banno, et. al, “Dissemination of Edge-Heavy Data on Heterogeneous MQTT Brokers,” in IEEE 6th International Conference on Cloud Networking (CloudNet), 2017.
P. S. Rompas, A. A. Wardana, and Albarda, “Robust Flood Monitoring Platform using Message Queueing Telemetry Transport Protocol,” in International Conference on Information Technology Systems and Innovation (ICITSI), 2017.
N. Shofa, A. Rakhmatsyah, S. A. Karimah, “Infusion monitoring using WiFi (802.11) through MQTT protocol,” in 5th International Conference on Information and Communication Technology (ICoIC7), 2017.
M. A. A. D. Cruz, et. al, “A Reference Model for Internet of Things Middleware,” IEEE Internet of Things Journal., Vol. 5, No. 2, Pp. 871–883, 2018.
M. T. Lazarescu, “Design of a WSN Platform for Long-Term Environmental Monitoring for IoT Applications,” IEEE Journal on Emerging and Selected Topics in Circuits and Systems., Vol. 3, No. 1, Pp. 45–54, 2013.
Y. J. Heo, et. al, “A Lightweight Platform Implementation for Internet of Things,” in 3rd International Conference on Future Internet of Things and Cloud, pp. 526–531, 2015.
I. Culic and A. Radovici, “Development Platform for Building Advanced Internet of Things Systems,” in 16th RoEduNet Conference: Networking in Education and Research (RoEduNet), 2017.
R. Elghondakly, S. Moussa, and N. Badr, “Waterfall and agile requirements-based model for automated test cases generation,” in IEEE Seventh International Conference on Intelligent Computing and Information Systems (ICICIS), 2015.
M. Kuhrmann, et. al, “Hybrid software and system development in practice: waterfall, scrum, and beyond,” in ACM International Conference on Software and System Process, 2017.
L. D. Vito, et. al, “An IoT-enabled Multi-sensor Multi-user System for Human Motion Measurements,” in IEEE International Symposium on Medical Measurements and Applications (MeMeA), 2017.
E. Bocchi, L. D. Cicco, and D. Rossi, “Measuring the Quality of Experience of Web users,” in ACM SIGCOMM Computer Communication Review, 2016.
L. Nguyen, et. al, “Modelling of Quality of Experience for Web Traffic,” in IEEE Second International Conference on Network Applications, Protocols and Services, 2010.
M. Varvello, et. al, “EYEORG: A Platform For Crowdsourcing Web Quality Of Experience Measurements,” in ACM Proceedings of the 12th International on Conference on emerging Networking EXperiments and Technologies, 2016.
A. E. Minarno, “Web Reporting Service dengan Database Terdistribusi untuk Monitoring Transaksi berbasis Point of Sales,” in Universitas Muhammadiyah Malang, 2009.
Google, “Measure performance with The RAIL Model,” from https://developers.google.com/web/fundamentals/performance/rail#goals-and-guidelines, last access 05 July 2019.