SKRIPSI IF
MONITORING LISTRIK BERBASIS IOT DENGAN POTOKOL MQTT DI MASJID NASHRULHAQ PANGKALAN KABUPATEN BANDUNG
ABSTRAK
Penelitian ini merancang dan mengimplementasikan sistem monitoring dan kontrol energi listrik berbasis IoT untuk lingkungan masjid menggunakan ESP32 sebagai pengendali utama, dengan sensor ZMPT101B (tegangan), ACS712 (arus), dan DHT22 (suhu–kelembapan). Data diolah untuk memperoleh nilai RMS tegangan/arus dan dikirim melalui Wi-Fi memakai MQTT ke platform Antares, serta divisualisasikan di Blynk. Kinerja komunikasi dievaluasi dengan metrik QoS (Throughput, Packet Loss, Delay, Jitter) pada 51 sampel. Hasil menunjukkan Packet Loss = 0% (baik), sementara Delay rata-rata ≈ 3702,89 ms dan Jitter ≈ 2394,33 ms tergolong buruk; Throughput efektif ≈ 1,181 kbps juga diklasifikasikan buruk terhadap ambang yang diacu. Temuan ini menegaskan keandalan pengantaran paket, namun mengindikasikan ketidakmemenuhan aspek ketepatan waktu untuk kebutuhan mendekati real-time.
Keywords: IoT, ESP32 , Antares, Blynk, MQTT, QoS, throughput, packet loss, delay, jitter, monitoring energi listrik.
ABSTRACT
The present study proposes a novel IoT-based electrical energy monitoring and control system for mosque environments. The system utilizes the ESP32 as the primary controller, complemented by ZMPT101B (voltage), ACS712 (current), and DHT22 (temperature–humidity) sensors. The data undergoes processing to obtain RMS voltage/current values, and it is transmitted via Wi-Fi using MQTT to the Antares platform. The data is then visualized on Blynk. The performance of communication is evaluated using quality of service (QoS) metrics, including throughput, packet loss, delay, and jitter, across a total of 51 samples. The results indicate that Packet Loss is 0%, which is classified as good. However, the average Delay of 3702.89 ms and the Jitter of 2394.33 ms are classified as poor. Furthermore, the Effective Throughput of 1.181 kbps is also classified as poor compared to the reference threshold. These findings confirm the reliability of packet delivery but indicate a lack of compliance with timing requirements for near-real-time needs.
Keywords: IoT, ESP32 , Antares, Blynk, MQTT, QoS, throughput, packet loss, delay, jitter, electrical energy monitoring.
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