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Pelatihan Ilmu Kelistrikan Di Lingkungan Pondok Pesantren An-Nur Ciseeng Fadly Nur Azzidane; Zalfa Rafandra Kusuma; Nurul Huluq; Jamal A Rachman; Seflahir Dinata
Inisiatif : Jurnal Dedikasi Pengabdian Masyarakat Vol 5 No 1 (2026): Inisiatif : Jurnal Dedikasi Pengabdian Masyarakat
Publisher : Pusmedia Group Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61227/inisiatif.v5i1.810

Abstract

Safety in the use and installation of electrical systems is a critical aspect in preventing electrical accidents and fires caused by malfunctions in the electrical system. However, the use of electrical energy at the An-Nur Ciseeng Islamic Boarding School has not been accompanied by an adequate understanding of electrical safety, energy efficiency, and the use of simple electrical technology as a backup energy source. The identified issues include low awareness of energy-efficient electricity use, a lack of knowledge regarding the maintenance of electrical installations, and limited skills in utilizing and assembling simple electrical systems. This community service activity aims to improve the students’ understanding and skills regarding electrical safety and the application of simple electrical technology. The implementation method used the Participatory Action Research (PAR) approach, which includes the mapping, planning, implementation, and evaluation stages. The program was conducted through a combination of 30% theoretical instruction and 70% hands-on practice, covering an introduction to electrical fundamentals, series-parallel circuits, soldering techniques, the construction of emergency lights, and training in simple electrical installation and repair. Evaluation was conducted using pre-tests, post-tests, and assessments of practical performance. The results of the activity showed an improvement in the students’ understanding and skills in the field of electricity, as evidenced by a 35% increase in their average scores following the training. In addition, all participant groups successfully produced simple emergency lights and were able to apply safety principles in electrical work. This activity made a positive contribution to improving the students’ electrical literacy, technical skills, and awareness of the safe, effective, and efficient use of electrical energy.
OPTIMALISASI SISTEM PEMBANGKIT LISTRIK TENAGA MIKROHIDRO DAN LAMPU TENAGA SURYA UNTUK MENDUKUNG AKTIVITAS MASYARAKAT DI DESA TUGU UTARA Muhammad Wahyu Taqwana; Arya Putra Sidiq; Nurul Huluq; Oky Supriadi; Rangga Zulian
BHAKTI NAGORI (Jurnal Pengabdian kepada Masyarakat) Vol. 6 No. 1 (2026): BHAKTI NAGORI (Jurnal Pengabdian kepada Masyarakat) Juni 2026
Publisher : LPPM UNIKS

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36378/bhakti_nagori.v6i1.5753

Abstract

Kegiatan pengabdian kepada masyarakat ini dilaksanakan di Kampung Rawa Gede LC RT 01/RW 06, Desa Tugu Utara, Kecamatan Cisarua, Kabupaten Bogor dengan tujuan meningkatkan kualitas penerangan lingkungan melalui pemasangan penerangan jalan umum dan peremajaan sistem Pembangkit Listrik Tenaga Mikrohidro (PLTMH). Permasalahan utama yang dihadapi masyarakat adalah minimnya penerangan jalan serta menurunnya performa sistem PLTMH akibat kerusakan instalasi dan kurangnya perawatan berkala. Metode pelaksanaan kegiatan meliputi survei lokasi, analisis kebutuhan alat dan bahan, perancangan sistem, perakitan peralatan, pelaksanaan pemasangan, serta evaluasi hasil kegiatan. Kegiatan yang dilakukan meliputi pemasangan 10unit lampu tenaga surya pada titik strategis lingkungan masyarakat dan perbaikan beberapa bagian instalasi PLTMH seperti kabel distribusi, sambungan instalasi, generator, dan turbin mikrohidro. Hasil kegiatan menunjukkan bahwa seluruh lampu penerangan berhasil berfungsi dengan baik dan mampu meningkatkan keamanan serta kenyamanan masyarakat saat beraktivitas pada malam hari. Selain itu, sistem PLTMH yang telah diremajakan menunjukkan peningkatan kestabilan dalam distribusi energi listrik. Kegiatan ini juga memberikan edukasi kepada masyarakat mengenai penggunaan energi listrik yang aman dan pentingnya pemanfaatan energi terbarukan. Dengan adanya kegiatan ini, diharapkan masyarakat dapat memperoleh manfaat jangka panjang serta meningkatkan kesadaran terhadap penggunaan energi alternatif yang ramah lingkungan dan berkelanjutan.
Design and Implementation of Grounding Resistance Control System Using Water Pump Actuator and Real-Time Monitoring Sensors gaguk firasanto; Yogi Priyo Istiyono; Nurul Huluq
PROtek : Jurnal Ilmiah Teknik Elektro Vol 13 No 1 (2026): Protek : Jurnal Ilmiah Teknik Elektro
Publisher : Program Studi Teknik Elektro Universitas Khairun

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33387/protk.v13i1.10617

Abstract

Grounding system performance is strongly influenced by soil moisture and temperature, which can vary significantly due to environmental conditions. The lack of real-time monitoring may cause grounding resistance to exceed safety limits, particularly during dry seasons. This study aims to design and evaluate a microcontroller-based grounding resistance control system capable of maintaining resistance below 5 Ω through real-time monitoring and automatic soil conditioning. An experimental method was applied at an active grounding installation in the Multi Integra Building, Rawamangun, Jakarta, representing tropical soil conditions with variable moisture content. The proposed system integrates soil moisture and temperature sensors, a microcontroller, and a water pump actuator operating in a closed-loop control scheme. Grounding resistance measurements were conducted before and after automated irrigation and validated using an earth resistance tester. The results show a clear inverse relationship between soil moisture and grounding resistance. Initial dry soil conditions produced an average grounding resistance of 6.095 Ω. After controlled irrigation, soil moisture increased to approximately 63.5% and soil temperature decreased, resulting in a significant reduction of grounding resistance to an average of 0.707 Ω. These findings confirm that active soil moisture control effectively stabilizes grounding performance and enhances electrical safety