Sistem audit energi portabel pada infrastruktur arus kuat berbasis edge computing set top box daur ulang dengan integrasi node-red dan google cloud
Penerbit : FTI - Usakti
Kota Terbit : Jakarta
Tahun Terbit : 2026
Pembimbing 1 : Chaerul Gagarin Irianto
Pembimbing 2 : Syah Alam
Kata Kunci : energy audit, power quality monitoring, edge computing, Internet of Things, cloud integration
Status Posting : Published
Status : Lengkap
| No. | Nama File | Hal. | Link |
|---|---|---|---|
| 1. | 2026_TS_MTE_162012410002_Halaman-Judul.pdf | ||
| 2. | 2026_TS_MTE_162012410002_Surat-Pernyataan-Revisi-Terakhir.pdf | ||
| 3. | 2026_TS_MTE_162012410002_Surat-Hasil-Similaritas.pdf | ||
| 4. | 2026_TS_MTE_162012410002_Halaman-Pernyataan-Persetujuan-Publikasi-Tugas-Akhir-untuk-Kepentingan-Akademis.pdf | ||
| 5. | 2026_TS_MTE_162012410002_Lembar-Pengesahan.pdf | ||
| 6. | 2026_TS_MTE_162012410002_Pernyataan-Orisinalitas.pdf | ||
| 7. | 2026_TS_MTE_162012410002_Formulir-Persetujuan-Publikasi-Karya-Ilmiah.pdf | ||
| 8. | 2026_TS_MTE_162012410002_Bab-1.pdf | ||
| 9. | 2026_TS_MTE_162012410002_Bab-2.pdf | 38 |
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| 10. | 2026_TS_MTE_162012410002_Bab-3.pdf | 16 |
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| 11. | 2026_TS_MTE_162012410002_Bab-4.pdf | 40 |
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| 12. | 2026_TS_MTE_162012410002_Bab-5.pdf | ||
| 13. | 2026_TS_MTE_162012410002_Daftar-Pustaka.pdf | ||
| 14. | 2026_TS_MTE_162012410002_Lampiran.pdf | 67 |
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P Pertumbuhan penggunaan beban non-linier pada infrastruktur arus kuat modern meningkatkan masalah kualitas daya secara signifikan. pemantauan kualitas daya secara realtime menjadi elemen kritis dalam audit energi, namun sistem monitoring yang tersedia saat ini menghadapi keterbatasan fundamental: menggunakan hardware mahal, bersifat stasioner tanpa portabilitas, tidak dilengkapi backup power, dan tidak mampu merekam data saat gangguan listrik kritis. penelitian ini mengidentifikasi kesenjangan signifikan dalam literatur: belum ada sistem yang mengintegrasikan repurposed hardware (stb daur ulang) dengan edge computing dan ekosistem google cloud terpadu untuk audit energi portabel pada infrastruktur arus kuat. kebutuhan akan solusi terjangkau, portabel, dan andal menjadi dorongan utama penelitian ini. penelitian ini merancang sistem audit energi portabel pada infrastruktur arus kuat berbasis edge computing menggunakan android set top box (stb) daur ulang yang dikonversi ke armbian linux, terhubung ke power quality analyzer me537 melalui modbus tcp. data diteruskan melalui node-red ke firebase realtime database untuk penyimpanan realtime dan google drive untuk arsip csv, kemudian divisualisasikan melalui google apps script dashboard. sistem dilengkapi ups 12v agar tetap beroperasi saat gangguan listrik. pendekatan inovatif memanfaatkan stb daur ulang untuk menekan biaya hingga 85–97% lebih murah dan menjaga portabilitas di berbagai lokasi. hasil penelitian membuktikan kelayakan teknis sistem iot berbasis edge computing dalam melakukan audit energi menyeluruh dengan memonitor parameter kualitas daya meliputi tegangan (v), arus (i), daya aktif/reaktif/semu (p/q/s), faktor daya (pf), total harmonic distortion (thd), harmonik orde 2–50, frekuensi, ketidakseimbangan tegangan dan arus, serta konsumsi energi (kwh). sistem ini dapat diakses oleh industri kecil-menengah dan institusi pendidikan sebagai solusi audit energi terjangkau dan dapat direplikasi.
T The growing use of non-linear loads in modern high-current infrastructure significantly increases power quality issues. realtime power quality monitoring is a critical element in energy audits; however, currently available monitoring systems face fundamental limitations, such as utilizing expensive hardware, being stationary without portability, lacking backup power, and being incapable of recording data during critical power outages. this research identifies a significant gap in the literature: no system currently integrates repurposed hardware (recycled stbs) with edge computing and an integrated google cloud ecosystem for portable energy audits on high-current infrastructure. the need for an affordable, portable, and reliable solution is the primary driver of this study.this research designs a portable energy audit system for high-current infrastructure based on edge computing using a recycled android set top box (stb) converted to armbian linux, which is connected to an me537 power quality analyzer via modbus tcp. data is forwarded through node-red to the firebase realtime database for realtime storage and google drive for csv archiving, then visualized via a google apps script dashboard. the system is equipped with a 12v ups to remain operational during power outages. this innovative approach utilizes recycled stbs to reduce costs by up to 85–97% while maintaining portability across various locations. the results demonstrate the technical feasibility of this edge computing-based iot system in conducting comprehensive energy audits by monitoring power quality parameters, including voltage (v), current (i), active/reactive/apparent power (p/q/s), power factor (pf), total harmonic distortion (thd), 2nd to 50th-order harmonics, frequency, voltage and current unbalance, and energy consumption (kwh). this system is highly accessible to small-and-medium enterprises (smes) and educational institutions as an affordable and replicable energy audit solution.