MUHAMAD, FARHAN ALMADILA (2026) SISTEM KENDALI DAN MONITORING SUHU RUANG PANEL MOTOR CONTROL CENTER (MCC) BERBASIS IoT. S1 thesis, Universitas Mercu Buana Jakarta.
|
Text (HAL COVER)
COVER.pdf Download (838kB) | Preview |
|
|
Text (BAB I)
BAB1.pdf Restricted to Registered users only Download (217kB) |
||
|
Text (BAB II)
BAB2.pdf Restricted to Registered users only Download (780kB) |
||
|
Text (BAB III)
BAB3.pdf Restricted to Registered users only Download (379kB) |
||
|
Text (BAB IV)
BAB4.pdf Restricted to Registered users only Download (614kB) |
||
|
Text (BAB V)
BAB5.pdf Restricted to Registered users only Download (261kB) |
||
|
Text (DAFTAR PUSTAKA)
DAFPUS.pdf Restricted to Registered users only Download (306kB) |
||
|
Text (LAMPIRAN)
LAMPIRAN.pdf Restricted to Registered users only Download (881kB) |
Abstract
The Motor Control Center (MCC) panel in industrial environments plays an essential role in motor protection, load monitoring, and control systems for production machinery. Due to its critical function, the temperature and humidity inside the MCC panel room must be monitored regularly. To enable efficient monitoring, a system capable of real-time, remote monitoring and control of the panel room cooling system is required. This research designs an IoT-based control and monitoring system for the temperature of a Motor Control Center (MCC) panel room. The system utilizes a DHT22 sensor as the independent variable to measure room temperature and humidity, while the dependent variables being controlled include the cooling system power status, temperature setpoint, fan speed, and cooling system operating mode. The research sample consists of temperature and humidity data obtained periodically from a single test room, collected using a time sampling technique at intervals of 2 seconds. The system is equipped with an I2C LCD display for local monitoring and the Blynk application as a remote control interface. The results show that the system is capable of monitoring temperature and humidity in real-time, controlling the cooling system via the Blynk application. The conclusion of this research is that the designed system operates as intended, is flexible and reliable, and has the potential to be implemented as an efficient and adaptive smart cooling control solution for industrial environments. Keywords: ESP32, Internet of Things, DHT22 Panel Motor Control Center (MCC) dalam dunia industri memiliki kegunaan sebagai proteksi, monitoring beban motor, serta sistem kontrol motor mesin produksi. Dengan memilki peran penting, suhu dan kelembapan ruang panel harus dimonitoring secara berkala. Agar monitoring dapat dilakukan secara efisien diperlukan sistem yang dapat memonitoring secara real-time dan dapat dimana saja serta dapat mengendalikan pendingin ruangan panel tersebut. Penelitian ini merancang sebuah sistem kendali dan monitoring suhu ruang panel Motor Control Center (MCC) berbasis IoT. Sistem ini memanfaatkan sensor DHT22 sebagai variabel bebas untuk mengukur suhu dan kelembapan ruangan, sedangkan variabel terikat yang dikendalikan meliputi status daya pendingin ruangan, suhu setpoint, kecepatan kipas, serta mode operasi pendingin ruangan. Sampel penelitian berupa data suhu dan kelembapan ruangan yang diperoleh secara periodik dari satu ruang uji dengan pengambilan sampel menggunakan teknik sampling waktu (time sampling) setiap 2 detik. Sistem dilengkapi dengan tampilan LCD I2C sebagai media monitoring lokal dan aplikasi Blynk sebagai antarmuka kendali jarak jauh. Hasil penelitian menunjukkan bahwa sistem mampu memonitor suhu dan kelembapan secara real-time, mengendalikan pendingin ruangan melalui aplikasi Blynk. Kesimpulan dari penelitian ini adalah sistem yang dirancang berhasil bekerja sesuai fungsinya, bersifat fleksibel, andal, serta memiliki potensi untuk diterapkan sebagai solusi kendali pendingin ruangan cerdas yang efisien dan adaptif terhadap kondisi lingkungan. Kata Kunci: ESP32, Internet of Things, DHT22
Actions (login required)
![]() |
View Item |
