Shina, Ibnu (2026) Optimasi Kapasitas SVC Dan STATCOM Berbasis Dual Annealing Untuk Peningkatan Kestabilan Tegangan pada Sistem Microgrid Isolated Pulau Medang. Masters thesis, Institut Teknologi Sepuluh Nopember.
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Abstract
Sistem microgrid mengintegrasikan berbagai sumber pembangkit untuk melayani beban pada wilayah tertentu, khususnya daerah terisolasi. Namun, tingginya penetrasi pembangkit energi terbarukan, terutama Pembangkit Listrik Tenaga Surya (PLTS) berbasis photovoltaic (PV) , dapat menimbulkan fluktuasi tegangan yang mengganggu kestabilan sistem. Penelitian ini menganalisis pengaruh pemasangan Static Var Compensator (SVC) dan Static Synchronous Compensator (STATCOM) terhadap nilai Voltage Stability Margin (VSM) dan Reactive Power Margin (RPM) pada sistem kelistrikan microgrid Pulau Medang. Selain itu, penelitian ini juga bertujuan menentukan kapasitas optimum SVC dan STATCOM untuk meningkatkan kestabilan tegangan sistem. Penentuan kapasitas optimum SVC dan STATCOM dilakukan menggunakan algoritma Dual Annealing (DA). Analisis dilakukan melalui tiga skenario: tanpa FACTS, dengan SVC, dan dengan STATCOM. Pemasangan STATCOM menghasilkan tegangan operasi 1,002 p.u., lebih tinggi dibanding SVC (1,000 p.u.) dan kondisi awal (0,9918 p.u.). Berdasarkan kurva P–V, VSM meningkat dari 49,67 MW menjadi 50,10 MW (SVC) dan 51,10 MW (STATCOM), sementara LM naik dari 12,36 MW menjadi 14,30 MW dan 15,06 MW. Berdasarkan kurva Q–V, RPM meningkat dari 40,31 MVAr menjadi 40,60 MVAr dan 41,81 MVAr. Kapasitas optimum SVC dan STATCOM masing-masing 1,2568 MVAr dan 1,6665 MVAr, dengan STATCOM memberikan peningkatan terbaik pada seluruh indikator. Kontribusi ilmiah penelitian ini adalah kerangka optimasi kapasitas SVC dan STATCOM berbasis integrasi Dual Annealing–DIgSILENT PowerFactory 2022 (Python) pada microgrid isolated riil yang dapat direplikasi pada sistem kepulauan kecil lainnya.
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A microgrid integrates various generation sources to supply loads within a specific area, particularly in isolated regions. However, the high penetration of renewable energy resources, especially Photovoltaic (PV) power plants, may cause voltage fluctuations that disturb system stability. This study analyzes the effect of installing a Static Var Compensator (SVC) and a Static Synchronous Compensator (STATCOM) on the Voltage Stability Margin (VSM) and Reactive Power Margin (RPM) and determines their optimum capacities for the Medang Island microgrid using the Dual Annealing (DA) algorithm. The analysis is carried out through three scenarios: without FACTS, with SVC, and with STATCOM. The installation of STATCOM produces an operating voltage of 1.002 p.u., higher than that of SVC (1.0000 p.u.) and the uncompensated condition (0.9918 p.u.). Based on the P–V curve, the VSM increases from 49.67 MW to 50.10 MW (SVC) and 51.10 MW (STATCOM), while the Loading Margin (LM) rises from 12.36 MW to 14.30 MW and 15.06 MW. Based on the Q–V curve, the RPM increases from 40.31 MVAr to 40.60 MVAr and 41.81 MVAr. The optimum capacities of SVC and STATCOM are 1.2568 MVAr and 1.6665 MVAr, respectively, with STATCOM providing the best improvement across all indicators. The scientific contribution of this study is a framework for optimally sizing SVC and STATCOM based on the integration of Dual Annealing with DIgSILENT PowerFactory 2022 via Python, applied to a real isolated microgrid and replicable to other small island power systems.
| Item Type: | Thesis (Masters) |
|---|---|
| Uncontrolled Keywords: | Microgrid, SVC, STATCOM, Voltage Stability Margin, Reactive Power Margin, Dual Annealing, Loading Margin. |
| Subjects: | T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK1010 Electric power system stability. Electric filters, Passive. |
| Divisions: | Faculty of Intelligent Electrical and Informatics Technology (ELECTICS) > Electrical Engineering > 20101-(S2) Master Thesis |
| Depositing User: | Ibnu Shina |
| Date Deposited: | 30 Jul 2026 03:45 |
| Last Modified: | 30 Jul 2026 03:45 |
| URI: | http://repository.its.ac.id/id/eprint/139600 |
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