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Peningkatan Hard Skill Melalui Pelatihan Pemasangan Panel Surya untuk Siswa SMKN 1 Bireun Asri Asri; Ira Devi Sara; Sofyan Arianto; Ezwarsyah Ezwarsyah; Arnawan Hasibuan; Asran Asran
Jurnal Solusi Masyarakat Dikara Vol 4, No 3 (2024): Desember 2024
Publisher : Yayasan Lembaga Riset dan Inovasi Dikara

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

Panel surya semakin banyak digunakan untuk berbagai tujuan, bukan hanya untuk pencahayaan rumah. Panel surya atau sel surya sekarang juga digunakan sebagai tenaga penggerak air untuk pengairan. Penggunaan panel surya yang semakin masif merupakan sebuah peluang yang besar terutama bagi generasi  muda. Fenomena saat ini menunjukkan bahwa kurangnya tenaga kerja dalam pemasangan instalasi panel surya sedangkan permintaan pasar untuk tenaga pemasang panel surya semakin tinggi. Sungguh menguntungkan jika masyarakat dapat dididik tentang cara memasang sistem listrik tenaga surya. Studi lapangan awal menunjukkan bahwa penggunaan panel surya sangat menguntungkan karena membantu rumah hunian mengurangi biaya listrik bulanan yang harus dibayarkan ke PT PLN (Persero). Pada saat ini, sebagian besar panel surya tidak dapat berfungsi karena beberapa komponen rusak, seperti panel surya, fitting, dan aki. Masyarakat tidak memahami sistem dan cara memperbaikinya, sehingga panel surya tidak berfungsi dan pada akhirnya didiamkan begitu saja. Orang-orang akhirnya memilih kembali menggunakan listrik dari jaringan PT. PLN (Persero). pengabdian ini bertujuan melatih para generasi muda yang dimulai dari siswa-siswa sekolah menengah kejuaruan (SMK). Untuk menyelesaikan permasalahan tersebut, dilakukan praktek pemasangan komponen system panel surya seperti: install panel surya, memilih inverter dan memasangnya serta merangkai rangkaian pengontrol cas baterai. Kegiatan Pengabdian Masyarakat berupa pemasangan dan pelatihan PLTS telah berjalan sukses. Peserta pelatihan menunjukkan antusiasme yang tinggi dalam mengikuti seluruh tahapan pelatihan, mulai dari teori hingga praktik langsung. Hasil pelatihan menunjukkan peningkatan pemahaman peserta mengenai pemasangan dan pemeliharaan PLTS.
Systematic Literature Review on AI-Enhanced Dual-Axis Solar Tracking Systems: Techniques and Performance Analysis Muhammad Basyir; Yuwaldi Away; Tarmizi Tarmizi; Ira Devi Sara
International Journal of Engineering, Science and Information Technology Vol 6, No 3 (2026)
Publisher : Malikussaleh University, Aceh, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.52088/ijesty.v6i3.1553

Abstract

Recent advancements in artificial intelligence have significantly improved the performance of intelligent dual-axis solar-tracking systems, enabling more efficient photovoltaic (PV) energy harvesting under variable irradiance conditions, transient cloud cover, and mechanical uncertainties. This systematic literature review synthesizes 25 peer-reviewed studies (2018–2024) identified from Scopus and Web of Science using PRISMA 2020 procedures. We examine controller families (fuzzy logic, adaptive neuro-fuzzy interface system, deep reinforcement learning, and hybrid designs), sensing and actuation stacks (ephemeris, light sensors, inertial measurement, and computer-vision-based pose), and reported outcomes for tracking accuracy and energy gain. Across comparable conditions, AI-enabled controllers consistently reduce tracking error by ~10–35% and increase annual energy capture by ~8–25% relative to fixed-tilt or conventional rule-based/PID baselines, with the largest gains observed under partial shading and rapidly varying sky conditions. Validation is dominated by simulation, while prototype and hybrid (simulation plus field) evaluations—though fewer—provide stronger evidence of real-world robustness. Persistent challenges include computational cost on embedded hardware, sample-efficient learning and safety for field deployment, inconsistent reporting of metrics, and limited long-horizon testing. To address these gaps, we recommend (i) standardized benchmarking that reports tracking error, normalized energy yield, control latency and controller power, (ii) low-cost edge-AI implementations (model compression, quantization, and microcontroller-class deployment), and (iii) multi-season field trials with reproducible protocols across climates. The findings indicate a clear shift from static, hand-tuned control toward intelligent, adaptive methods. Hybrid designs emerge as a practical choice for deployment due to their combined stability and adaptability, whereas deep reinforcement learning shows state-of-the-art performance primarily in simulation and calls for careful simulation-to-real transfer. Overall, this review clarifies the evidence base and outlines priorities for fault-tolerant, low-cost, and real-time adaptive dual-axis solar tracking.
Heat Reduction on Light Emitting Diode Solar Simulator Cut Nurmuthaharah; Ira Devi Sara; Tarmizi Tarmizi
Journal of Renewable Energy, Electrical, and Computer Engineering Vol. 4 No. 2 (2024): September 2024
Publisher : Institute for Research and Community Service (LPPM), Universitas Malikussaleh, Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29103/jreece.v4i2.17983

Abstract

LED solar simulator converts electrical energy into light and heat. The resulting heat effect apply damage to the LED and affect performance and accuracy test. Despite being equipped with a heatsink and fan cooling system, the temperature of the LED solar simulator is still considerably quite high though it is necessary to lowered the temperature even further to increase its service life. One major challenge faced is the management of the heat generated by the LEDs. This article aims to investigate the effect of placing a copper pipe-based cooling system containing refrigerant R32 and Thermoelectric to reduce the temperature of the LED solar simulator by at least 10%. The use of thermoelectric cooler (type 12706) as an alternative cooling technology is safer for surrounding environment compared to vapor compression. Copper pipes were chosen for better conductivity, flexibility and better heat absorbance, meanwhile refrigerant R32 were chosen for it is environmentally friendly and possess a lower GWP. The test results illustrate the application of a copper pipe-based cooling system containing refrigerant R32 and thermoelectric succeeded in reducing the temperature of the LED solar simulator by 11,41% and increased the level of radiation uniformity from an average of 422 W/m² to 429 W/m² with a depreciation of non-uniformity of 0,84%. Thus, this very combination cooling system is proven effectively reducing the temperature of the LED solar simulator by at least 10%.
Co-Authors . Roslidar Aede Hatib Mustaamal Ahmad Surkani Ahmad Syuhada Akhyar Akhyar Alfizar Alfizar Alifa Annisa Amru Amir Zaki Mubarak Amna, Nurlaila Andi Julisman Andri Andri Aqsa SH, Aidil Ardiansyah Dian Lubis Aripriharta - Arnawan Hasibuan Asran Asran Asri Asri Asri Asyadi, Teuku Murisal Aulia Syahbanna Anhar Basyir, M. Budi Amri Cholis Cholis Cut Nurmuthaharah Doni Gunawan Effendi Effendi Ezwarsyah Ezwarsyah Fariz Mashuri Fikrel Jasman Fitri Arnia Gunawan, Doni Hafidh Hafidh Hafidh Hasan Hari Anna Lastya Hudal Mirrahman Husaini Husaini Irma Anggraini Jalil, Asri Muhammad Khairul Azmi khairul umurani Laina Hilma Sari Lisman Lisman Lubis, Rakhmad Syafutra M Ikhsan M. Darianzhah Putra M. Nizar Machmud M. Nizar Machmud Mahdi Syukri Mansur Gapy Masri Masri Maulana, Edi Mega Fatimah Rosana Mitra Walidain Muhajir Muhammad Aden Fahadi Muhammad Bahi Muhammad Irhamsyah Muhammad Rizal Fachri Muhammad Shabri Abd. Madjid Muhammad Yusuf Muhibbuddin Nasaruddin Nasaruddin Nikmal Maula Mirda Nor Julia Mohd Nordin Nor Shahida Hasan Norzanah Rosmin Novandri, Andri Novita Novita Nurul Malahayati Putra, T. Edisah Rachmad Ikhsan Rakhmad Syafutra Lubis Rakhmad Syafutra Lubis Rakhmad Syafutra Lubis Rakhmad Syafutra Lubis Ramdhan Halid Siregar Rika Sri Rizki Rizal Munadi Rizki Faulianur S.Pd. M Kes I Ketut Sudiana . Saddam Azmi Saifuddin Muhammad Jalil Saiful Saiful Siti Maherah Husin Sofyan Arianto Suhaeri Suhaeri Sura Eka Pratama Pagan Suriadi Suriadi Suriadi Suriadi Suriadi Suriadi Syahrizal Syahrizal Syahrizal Syaukani Syaukani Syukriyadin Syukriyadin Syukriyadin Syukriyadin, Syukriyadin T Yasar Yulis T. Edisah Putra T. Mizan Sya’rani D Tarmizi Tarmizi Tarmizi Tarmizi Tarmizi Tarmizi Tarmizi Tarmizi Tarmizi Tarmizi Teuku Mirzan Syahputra Ulya Zikra Umurani, Khairul Wahyu Priyanto Wahyu Priyanto Yulizar Yulizar Yusuf, Muhammad Yuwaldi Away Zainuddin Zainuddin Zakwansyah Zian Iqtimal Zikra Latasya Zoel Fachri