Almurozy Mursidan
Universitas Indraprasta PGRI

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Pendampingan Pengawasan Teknis Pembangunan Jalan Samota Untuk Peningkatan Aksesibilitas Kawasan Moyo Utara - NTB : MYC Muhammad Amran Fikrullah; Almurozy Mursidan
Battuta-Jurnal Pemberdayaan Masyarakat Vol 2 No 1 (2025): Edisi Januari
Publisher : LPPM Universitas Battuta

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Abstract

Jalan dan jembatan merupakan infrastruktur strategis yang mendukung konektivitas, membuka akses ke wilayah terpencil, serta meningkatkan mobilitas manusia dan barang. Proyek Pembangunan Akses Jalan Samota Lanjutan menggunakan skema Multi-Year Contract (MYC) Tahun Anggaran 2023–2024 bertujuan mengembangkan aksesibilitas kawasan strategis di Sumbawa melalui pembangunan jalan sepanjang 1,92 km dan empat jembatan, yaitu Jembatan Aik Bari 1 (60 m, Rangka Baja), Aik Bari 2 (16 m, PCI Girder), Aik Bari 3 (20 m, PCI Girder), dan Aik Bari 4 (4 x 60 m, Rangka Baja). Pengawasan teknis dalam proyek ini dilakukan untuk memastikan pelaksanaan pekerjaan memenuhi standar mutu, efisiensi biaya, ketepatan waktu, dan kepatuhan administratif. Kegiatan pengawasan mencakup pemeriksaan kesesuaian desain terhadap spesifikasi teknis dan hasil survei lapangan, pengujian material di laboratorium independen, serta pengendalian kualitas pekerjaan konstruksi di lapangan. Hasil pengawasan menjadi acuan untuk mengidentifikasi tantangan teknis, menganalisis efektivitas pengendalian mutu, serta memberikan rekomendasi untuk proyek sejenis. Pembangunan akses jalan ini dapat berjalan optimal, mendukung pengembangan ekonomi lokal dan pariwisata, serta memberikan manfaat berkelanjutan bagi masyarakat Sumbawa
Implementation of the Internet of Things for Real-Time Monitoring and Control of Environmental Conditions Indra Sari Kusuma Wardhana; Almurozy Mursidan
Technema: Journal of Intelligent Engineering and Computing Vol. 1 No. 2 (2026): : June: Technema: Journal of Intelligent Engineering and Computing
Publisher : CV SCRIPTA INTELEKTUAL MANDIRI

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Abstract

The development of the Internet of Things (IoT) enables environmental conditions to be monitored and controlled in real time through the integration of sensors, microcontrollers, wireless communication, monitoring interfaces, and actuators. This study aims to implement an IoT-based system for real-time environmental monitoring and automatic control based on measured environmental conditions, particularly temperature and humidity. The developed system integrates DHT11, MQ-2, and MQ-6 sensors with Arduino Uno R3, NodeMCU ESP8266, wireless communication, a monitoring dashboard, and relay-controlled actuators. Sensor measurements are processed and transmitted to the monitoring system, while predefined temperature thresholds are used to determine actuator activation. Experimental evaluation was conducted through sensor accuracy, communication reliability, monitoring, and automatic control tests. The results showed average temperature and humidity measurement errors of 0.78% and 1.46%, respectively, indicating relatively small deviations from reference measurements under the tested conditions. Communication testing achieved a 100% success rate for 100 transmitted packets with no packet loss, while the average communication delay was 412 ms. Automatic control testing achieved 100% success across 10 trials using a 30 °C temperature threshold. These findings demonstrate that the integrated IoT architecture can support responsive environmental monitoring and automated control within the tested operating conditions.