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ISSN 2615-5788 Print (2615-7764) Vol 12 No. 2 @ 2025 Wildan Surya Wijaya, Muhammad Risfan Ramadhani. Jurnal Teknik Elektro dan Komputer TRIAC 2025 Yunia Dwie Nurcahyanie, Muhamad Abdul Jumali https://journal.trunojoyo.ac.id/triac Wildan Surya Wijaya; Muhammad Risfan Ramadhani; Yunia Dwie Nurcahyanie; Muhamad Abdul Jumali
Jurnal Teknik Elektro dan Komputer TRIAC Vol 12, No 2 (2025): Oktober 2025
Publisher : Jurusan Teknik Elektro Universitas Trunojoyo Madura

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.21107/triac.v12i2.31256

Abstract

The use of small-scale solar energy is one of the strategic solutions for electricity needs in remote areas and outdoor activities. As the need for portable electrification increases, the development of solar backpack systems is becoming a practical and sustainable alternative. This research aims to design and test a portable backpack system based on a thin film solar panel with a capacity of 20 Wp, equipped with a 12V solar charge controller and a 7.2 Ah battery. The system is designed with two outputs, namely 12V DC and 5V USB, to support lightweight devices such as LED lights and smartphones. The test was carried out at two different locations, namely Mount Lorokan and Mount Penanggungan, with data taken which included latitude, longitude, solar elevation angle, PV voltage, PV current, and output power. The measurement results show that there is a variation in the performance of solar panels according to geographical conditions and solar elevation angles. On Mount Lorokan, the peak power reaches 8.55 W at an angle of 75°, while on Mount Penanggungan the maximum power is slightly higher, which is 8.6 W at an angle of 78°. Mount Lorokan excels at maximum power, Penanggungan shows more stable performance at low to medium angles. This research contributes to the development of a portable electrification system based on renewable energy that supports power continuity in locations without access to electricity.
Design and Construction of A Pico Hydro Power Plant for Electrification in Singogalih Village Wildan Surya Wijaya; Alif Dwi Prasetyo; Akhmad Solikin; muhammad imam malik
Jurnal Ilmiah Dinamika Rekayasa Vol. 22 No. 1 (2026): Jurnal Ilmiah Dinamika Rekayasa - Januari
Publisher : Engineering Faculty, UNSOED

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20884/1.jidr.2026.22.1.53

Abstract

Energy is a vital necessity in supporting societal activities; however, dependence on non-renewable fossil fuels poses sustainability challenges. Therefore, the development of New and Renewable Energy (NRE) serves as a strategic solution, especially in rural areas that still face limited access to electricity. This study examines the implementation of a Pico Hydro Power Plant (PLTPH) based on an Archimedes Screw turbine in Singogalih Village, Tarik Sub-district, Sidoarjo Regency, as an environmentally friendly alternative for providing electricity for lighting in rice field areas. The system utilizes water flow from irrigation channels to drive the turbine and generate electricity, which is then regulated through a Control Charger (CC) to power LED lamps. Testing was conducted over three weeks by observing generator rotation (RPM), voltage, and electric current at three different times each day. Measurement results showed an increase in system performance from week to week. RPM rose from 226.9 to 384.4, voltage increased from 6.5 V to 11.0 V, and current rose from 0.49 A to 0.82 A. This improvement indicates that the PLTPH system is capable of operating consistently and efficiently in converting water’s kinetic energy into electrical energy under existing flow conditions, reflecting the enhanced performance of the generator and the system as a whole during the testing period. The findings demonstrate that a PLTPH using an Archimedes Screw turbine can serve as a sustainable, self-reliant, and appropriate lighting solution for rural areas with continuous water flow potential.
Rancang Bangun Sistem Monitoring Kualitas Daya Berbasis Blynk pada Panel Alat Pengusir Burung Bertenaga Surya (Off Grid) Mochammad Irsyad Nasrullah; Wildan Surya Wijaya
Indonesian Journal of Multidisciplinary on Social and Technology Vol. 4 No. 3 (2026): Juli - Oktober
Publisher : PT Ilmu Data Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.69693/ijmst.v4i3.13573

Abstract

Perkembangan teknologi saat ini terjadi begitu cepat dan luas, menyentuh hampir ke semua aspek kehidupan manusia, termasuk pada teknologi tenaga surya dan internet of things (IOT). Perkembangan teknologi tenaga surya dan IOT menjadi primadona baru di bidang energi listrik, karena menawarkan energi listrik terbarukan yang ramah lingkungan dan efisien, terutama untuk daerah yang susah mendapatkan aliran listrik seperti daerah pertanian dan perikanan. Hal tersebut menjadi peluang bagi pemanfaatan tenaga surya dan IOT, karena sebagai negara yang mengandalkan perekonomiannya pada sektor pertanian dan perikanan, pemanfaatan tersebut mendorong upaya elektrifikasi di sektor tersebut. Indonesia sebagai negara yang mengandalkan sektor pertanian dan perikanan sebagai tulang punggung perekonomian, sudah seharusnya memanfaatkan perkembangan teknologi tenaga surya dan IOT untuk mengakselerasi produksi pangan nasional. Salah satu bentuk pemanfaatan teknologi tenaga surya dan IOT pada sektor pertanian adalah dengan membangun alat pengusir hama yang bertenaga surya dan menggunakan IOT untuk sistem monitoring kualitas dayanya. Alat tersebut dapat dipasang pada area persawahan maupun tambak ikan/udang dengan paparan matahari maksimal. Pemanfaatan tenaga surya pada alat pengendali hama di sektor pertanian dan perikanan sangat tepat, dikarenakan kondisi di lapangan yang tingginya intensitas cahaya matahari sehingga potensi energi listrik yang dihasilkan sangat besar. Namun, pemanfaatan tenaga surya sebagai sumber energi bagi alat pengendali hama memunculkan tantangan dalam monitoring dan perawatan untuk menjaga tingkat efisiensi energi yang dihasilkan sistem tenaga surya.