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SOSIALISASI DAN PEMANFAATAN PEMBANGKIT LISTRIK TENAGA SURYA PORTABLE SEBAGAI SUMBER ENERGI LISTRIK ALTERNATIF DI UMKM HASANUDIN KOTA MALANG Slamet Nurhadi; Binar Surya Gumilang; Divac Nabiel Akbar; Asfari Hariz Santoso; Rhezal Agung Ananto; Bakti Indra Kurniawan
JURNAL PENGABDIAN MANDIRI Vol. 4 No. 10 (2025): Oktober 2025
Publisher : Bajang Institute

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.53625/jpm.v4i10.11514

Abstract

UMKM Hasanudin, yang berdiri sejak tahun 2013 dan telah berkembang menjadi tujuan Kuliner dan istirahat sejenak bagi warga malang, terutama karyawan dan pelajar. UMKM ini menjadi mitra utama dalam proyek pengabdian ini yang bertujuan untuk meningkatkan konektivitas dan mobilitas di lokasi tersebut. Proyek ini fokus pada instalasi PLTS off grid dengan sistem PLTS Foldable untuk mengatasi tantangan keterbatasan akses listrik, terutama di lokasi UMKM. Keterbatasan sumber energi dikarenakan daya listrik terpasang sebesar 900kwh. Kebutuhan daya tersebut hanya dapat memenuhi kebutuhan UMKM saja, sedangkan kebutuhan pelanggan untuk charging HP dan Laptop sering kali membuat trip sumber listrik UMKM. Dengan menyediakan fasilitas pengisian daya yang handal untuk perangkat elektronik seperti ponsel dan laptop, proyek ini memungkinkan pengunjung untuk tetap terhubung dan berkomunikasi selama berada di kawasan. Penerapan charging station portabel ini menyediakan solusi praktis dan efisien, meningkatkan kenyamanan pengunjung dengan memastikan mereka dapat tetap terhubung selama berada di kawasan. Pemanfaatan Charging Station portable juga termasuk dalam salah satu Langkah hilirisasi produk penelitian mahasiswa Jurusan Teknik Elektro yang berupa Pembangkit Listrik Tenaga Surya Portable.
Smartphone-Based Remote Control System for an Automated Red Onion Irrigation Robot Asti, Irfin Sandra; Firdaus, Fauzan Faadihilah; Permatasari, Delila Cahya; Pradani, Erlillah Rizqi Kusuma; Mowaviq, Muhammad Imbarothur; Ananto, Rhezal Agung
G-Tech: Jurnal Teknologi Terapan Vol 9 No 4 (2025): G-Tech, Vol. 9 No. 4 October 2025
Publisher : Universitas Islam Raden Rahmat, Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70609/g-tech.v9i4.8153

Abstract

Agriculture remains a vital sector in ensuring food security, economic stability, and rural livelihoods, particularly in developing countries such as Indonesia. Among various agricultural commodities, red onion (Allium cepa L.) plays a crucial role as one of the most consumed horticultural products and a key income source for farmers. However, its cultivation requires consistent soil moisture, and manual irrigation often results in inefficiency, labor intensity, and inconsistent watering. To address this problem, this study presents the design and implementation of a smartphone-based remote control irrigation robot for red onion cultivation. The system was developed using the ESP32 microcontroller integrated with the Blynk mobile application, enabling wireless control of both mobility and irrigation functions. Hardware components include a DC pump, motor driver, and relay module, supported by a 12-volt rechargeable battery as the power source. The robot’s mechanical frame, constructed from lightweight PVC and acrylic materials, was designed to provide stability and durability in agricultural environments. Performance tests showed that the robot operated reliably within a 20–30 m Wi-Fi range, achieved a movement speed of approximately 3 km/h, and produced water pressure of 160 psi, sufficient for red onion irrigation. Battery endurance reached 1 hour 40 minutes under continuous operation. In conclusion, the developed system demonstrates a practical, low-cost solution that integrates robotics and IoT technology to improve irrigation efficiency, reduce manual labor, and support sustainable water management in red onion farming.