ANALISIS EFISIENSI DAN PERFORMA PROTOKOL MQTT PADA SISTEM INTERNET OF THINGS : STUDI LITERATUR
DOI:
https://doi.org/10.62671/suliwa.v3i2.304Keywords:
Internet of Things, MQTT, Communication Protocol, Performance Analysis, EfficiencyAbstract
Internet of Things (IoT) has significantly transformed modern digital communication systems by enabling interconnected devices to exchange data in real-time. The increasing number of IoT devices requires lightweight, efficient, and low-latency communication protocols. One of the most widely used protocols in IoT systems is Message Queuing Telemetry Transport (MQTT), which supports real-time communication with low bandwidth usage and minimal resource consumption. This study aims to analyze the efficiency and performance of the MQTT protocol in IoT systems using a Systematic Literature Review (SLR) approach. The research was conducted by collecting and analyzing international journal articles related to MQTT performance, communication efficiency, Quality of Service (QoS), scalability, reliability, and bandwidth utilization. The results show that MQTT provides lower latency, better bandwidth efficiency, and more flexible communication compared to conventional protocols such as HTTP and AMQP. In addition, MQTT is highly suitable for constrained devices and real-time monitoring systems. However, MQTT performance is influenced by several factors, including broker capacity, QoS configuration, payload size, network conditions, and security mechanisms.
References
Al-Fuqaha, A., Guizani, M., Mohammadi, M., Aledhari, M., & Ayyash, M. (2015). Internet of Things: A Survey on Enabling Technologies, Protocols, and Applications. IEEE Communications Surveys & Tutorials, 17(4), 2347–2376. https://doi.org/10.1109/COMST.2015.2444095
Dizdarevic, J., Michalke, M., & Jukan, A. (2023). Engineering and Experimentally Benchmarking Open Source MQTT Broker Implementations. http://arxiv.org/abs/2305.13893
Gavriilidis, N. O., Halkidis, S. T., & Petridou, S. (2025). Empirical Evaluation of TLS-Enhanced MQTT on IoT Devices for V2X Use Cases. Applied Sciences, 15(15), 8398. https://doi.org/10.3390/app15158398
Gentile, A. F., Macrì, D., Carnì, D. L., Greco, E., & Lamonaca, F. (2024). A Network Performance Analysis of MQTT Security Protocols with Constrained Hardware in the Dark Net for DMS. Applied Sciences, 14(18), 8501. https://doi.org/10.3390/app14188501
Jesus, B., Lins, F., & Laranjeiro, N. (2025). An approach to assess robustness of MQTT-based IoT systems. Internet of Things, 31, 101590. https://doi.org/10.1016/j.iot.2025.101590
Kim, H. J., & Lee, M. H. (2026). A Comparative Performance Study of Parallel MQTT and RS485 Communication Architectures for High-Frequency IoT Sensing. Electronics, 15(4), 760. https://doi.org/10.3390/electronics15040760
Longo, E., & Redondi, A. E. C. (2023). Design and implementation of an advanced MQTT broker for distributed pub/sub scenarios. Computer Networks, 224, 109601. https://doi.org/10.1016/j.comnet.2023.109601
Murthy, M. Y. B., Kumar, G. V. S., Mrudula, K., Shaik, R., & Prasad, S. K. (2023). PERFORMANCE EVALUATION OF MQTT PROTOCOL IN INTERNET OF THINGS. Telecommunications and Radio Engineering, 82(8), 51–57. https://doi.org/10.1615/TelecomRadEng.2023045375
Saha, N., Paul, P., Ji, K., & Harik, R. (2024). Performance evaluation framework of MQTT client libraries for IoT applications in manufacturing. Manufacturing Letters, 41, 1237–1245. https://doi.org/10.1016/j.mfglet.2024.09.150
Seoane, V., Garcia-Rubio, C., Almenares, F., & Campo, C. (2021). Performance evaluation of CoAP and MQTT with security support for IoT environments. Computer Networks, 197, 108338. https://doi.org/10.1016/j.comnet.2021.108338
Tran, K. T. M., Pham, A. X., Nguyen, N. P., & Dang, P. T. (2024). Analysis and Performance Comparison of IoT Message Transfer Protocols Applying in Real Photovoltaic System. International Journal of Networked and Distributed Computing, 12(1), 131–143. https://doi.org/10.1007/s44227-024-00021-4
Yassein, M. B., Shatnawi, M. Q., Aljwarneh, S., & Al-Hatmi, R. (2017). Internet of Things: Survey and open issues of MQTT protocol. 2017 International Conference on Engineering & MIS (ICEMIS), 1–6. https://doi.org/10.1109/ICEMIS.2017.8273112
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