Analisis Komparatif Performa Latensi dan Stabilitas Koneksi Wemos D1 Mini Vs Esp32-C3 Minipada Sistem Kendali Jarak Jauh Berbasis IoT
Keywords:
IoT; Esp8266 Wemos D1 Mini; Esp32-C3; Latensi; RSSI; Kendali Jarak JauhAbstract
Abstract: This research conduct a comparative analyisis of connectivity performance between the Esp8266 (Wemos D1 Mini) and the Esp32-C3 Miniwithin internet of things (IoT) remote control systems. The primary problem addressed is the critical need for low latency and high connection stability in real-time difital infrastructure management, where developers often face a trade-off between costt-eficiency and hardware performance. The objective of this study is to empirically evaluate which microcontroller provides supervisor responsiveness. An experimental methode was proposed by measuring two key parameters : Receive Signal Strength Indicator (RSSI) and data transmission latency accros various distances and physical obstacles. The mind findings reveal that the Esp32-C3 Mini, utilizing the RISC-V architecture, demontsrates more consistent signal stability and significantly lower overage latency compared to the Esp8266, particularly in indoor environments with structural interference. In conclusion, the Esp32-C3 Mini is more effective successor to the Esp8266 for moder IoT applications that require high realibility and rapid respons times.
Keywords: IoT; Esp8266 Wemos D1 Mini; Esp32-C3; Latency; RSSI; Remote Control;
References
C. H. G. T. Sebastian Villamil1, "An overview of internet of things," TELKOMNIKA, vol. 18 No. 5, no. Telecommunication, Computing, Electronics and Control, p. 8, 2020.
H. SOY, "ESP8266 and ESP32 Series of SoC Microcontrollers," Programmable Smart Microcontroller Cards, p. 16, 2021.
M. N. N. Arief Wisaksono1, "Earthquake monitoring system based on Wemos D1 Mini with," 2nd Annual Conference on Health and Food Science Technology (ACHOST 2021), no. Earth and Environmental Science, p. 10, 2022.
V. M. T. V. G. R. Y. V. O. Y. V. T. O. V. P. I. G. Tsmots1, "RECOVERY OF LOST NAVIGATION DATA IN MOBILE ROBOTIC PLATFORMS," Ukrainian Journal of Information Technology, vol. 7, no. INFORMATION SYSTEMS AND TECHNOLOGIES, p. 11, 2025.
E. Systems, "ESP32-C3-MINI-1, ESP32-C3-MINI-1U Datasheet Version 2.2," Article, no. Module Overview, p. 48, 2008.
A. A. J. Mohd Tamizan Abu Bakar1, "Latency Issues in Internet of Things: A Review of Literature," International Journal of Advanced Trends in Computer Science and Engineering, vol. 9, no. Latency Issues in Internet of Things, p. 9, 2020.
M. Asplund, "Zero Latency Per-Task Isolation for the," Luleå University of Technology, no. Computer Science and Engineering, master's level, p. 49, 2025.
A. N. S. Abdul Rahman1, "SISTEM KENDALI PH DAN KEKERUHAN AIR AQUASCAPE," Jurnal Teknologi Terpadu, vol. 8, no. sistem kendali , p. 9, 2022.
F. A. Moch.Fachruddin Arrazaq1, "Automatic Switch Design with Specified Time Using Wemos D1 Mini Esp," International Journal of Education, Information Technology and Others (IJEIT), no. Automatic Switch Design, p. 14, 2023.
L. G. J. D. T. H. Ishwar Mudraje, "Open-Source ESP32-C3 Wi-Fi Drivers for Static Analysis," no. Computer systems organization → Embedded and cyber-, p. 6, 2025.
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